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Interference With Cell-to-cell Signaling: a Potential Therapeutic Approach Against Vibrio Species

Vijaya baskar .P 1* AND Veera ravi.A 2

1. Department of biotechnology Dr. G.R.D.C.S, Coimbatore.

2. Department of biotechnology, Alagappa University, karaikudi.

ABSTRACT

Bacterial biofilms are sessile communities with high cell density that are ubiquitous in natural, medical, and engineering environments; they are fascinating since they are primitive tissues with an advanced chemical communications network. Currently, there is an explosive amount of biofilm research, most of it with the ultimate aims of biofilm prevention, control, or eradication.The present investigation was aimed to study the cell signaling principle among seaweed epibiotic bacterial organisms , totally 54 bacterial isolates were made out of 20 seaweed species. Among 54 bacterial isolates 17 of them producer, another 17 of them inducer strains rest of 20 isolates were normal that have not showing any signs of activity. The 17 producers and 17 inducer strains were subjected to the cross species induction by quorum sensing principle and found that only 3 of them have responded to the cross species induction in production of antibacterial compound against the respective inducer strains. All the 3 producers and inducer were identified by biochemical analysis and surprisingly that all the 3 producer strain belongs to Genus Pseudomonas and inducer strains were belongs to Genus Vibrio. The supernatant obtain from mixed culture of Pseudomonas & Vibrio shows the antibiotic activity against the various Vibrio species which were isolated from other sources. Such as Vibrio from primary film, Vibrio from sediment Vibrio from seaweeds epibiotics. The obtain results clearly shows the particular Pseudomonas from seaweed epibionts has the capability of producing potential antibiotic compound against wide range of Vibrio species through quorum sensing.

*Corresponding author e-mail: vijay10bas@yahoo.co.in

INTRODUCTION

We are living in a microbial planet. About 71 % of the surface of this planet is covered by sea water. A typical milliliter of seawater contains 103 fungal cells, 106 bacteria, and 107 viruses, including pathogens that cause widespread mortalities and microbes that initiate fouling of host surfaces (Rheinheimer, 1992). Thus, marine plants and animals are continually exposed to high concentrations of potentially harmful microbes. These microorganisms in nature exists as free living planktonic mode of life in sea water or it may exist as epibiotic organisms in various living and nonliving surfaces. Among living organisms, seaweeds and invertebrates act as suitable substrate for the establishment of epibiotic organisms Seaweeds are known to release a large amount of organic carbon into the surrounding environment providing a nutrient rich habitat for microorganisms like bacteria. Bacteria are generally considered to be independent unicellular organisms. One cell accomplishes all of the tasks of feeding, locomotion, 'reproduction, respiration and all other processes necessary to keep an organism alive. There are several classes of bacteria such as primary film forming bacteria, sediment bacteria, symbiotic bacteria, and epibiotic bacteria in various aquatic organisms. The marine surface environment is a site of intense composition for living space by a wide variety of organisms. Bacteria are generally recognized as primary colonizers of this habitat and are able to form biofilm on marine surface such as invertebrates and algae (Bryers, et al., 1982). Bacteria may also be abundant on the surfaces of some algae as an important epibiotic organism. In many cases, the bacterial population found to be specific, with changes occurring throughout the year or life span of the algal surface. This algal-bacterial relationship is symbiotic in most cases; the epibiotic bacteria in seaweed play a protective role by releasing secondary metabolites into the surrounding seawater that help preventing extensive fouling of the surface. Epibiotic bacteria are therefore attracting attention as a source of new natural products. Bacteria from the larvae of some crustaceans protect them from fungal infection by the production of simple antimicrobial compounds. Bacteria isolated from the surface of a tunicate prevented the settlement of barnacle and tunicate larvae exposed to the bacteria as biofilm in petridishes (Evelyn et al., 2001).

Seaweeds itself secretes secondary metabolites to prevent fouling and grazing. In addition to that epibiotic bacteria on macro algae can also produce antifouling compounds that work in concert with the seaweed derived compounds to protect the seaweed surface. Recent studies have highlighted important roles of epibiotic bacteria colonizing the surface of seaweeds and releasing antifouling compounds. For the past 50 years antibiotics have revolutionized medicine by providing cures for formerly life threatening diseases. However, strains of bacteria have recently emerged that are virtually unresponsive to antibiotics such multidrug resistance, arising mainly through antibiotic misuse, is now recognized as a global health problem. In this situation, it is clear that new classes of antibiotics are urgently needed. Many marine bacteria have been shown to produce secondary metabolites that display antibacterial properties. The first antibiotic from a marine bacterium was identified and characterized in 1966. In addition, bacteria in biofilm on the surface of marine organisms have been documented to contain a higher proportion of antibiotic producing bacteria than some other marine environments (Burgess, et al., 1999). Marine epibiotic bacteria, associated with nutrient-rich algal surfaces have also been shown to produce antibacterial secondary metabolites which inhibit the settlement of potential competitors. Recently a lot new novel antibiotics such as Phenazine, thiomarinol, phenazine-1-carboxylic acid, 1-hydroxyphenazine 2-n-heptylquinol-4-one, 2-n-nonylquinol-4-one pyolipic, loloatins, agrochelin, sesbanimides, pelagiomicins, indomycione and indomycione have been identified from various marine epibiotic bacterial organisms. In particular, some species of the genus Pseudomonas produce both antibiotics and several other bioactive substances. For example, Pseudoalteromonas rubra and Pseudoalteromonas aurantia have been reported to be antibiotic producing bacteria. The phenomenon of higher organisms utilizing their associated microflora for the production of beneficial secondary metabolites is common in the marine environment (Yotsu, et al., 1987). A study of bacteria isolated from marine algae surfaces indicated that the incidence of antibiotic producing strains from this habitat was 20% whereas that from sea water was only a few percent. In addition, some bacteria that previously did not produce any active compounds have been found to be producing such metabolites when they are exposed to other bacterial species or extra cellular chemical from other bacteria. Bacteria may also produce antimicrobial compounds when they sense the presence of competing organisms. However, few attempts have been made to study such chemical communication between different bacterial species or how this might affect. The secretion of antimicrobial compounds (Mearns-Spragg, et al., 1998). Bacterial communication by the chemical signals for specific function is simply known as Quorum sensing. In which a bacterial population receives input from the environment and elicits an appropriate response (Hiroaki and Kristina. 2003). The term "quorum sensing" describes the ability of a microorganism to perceive and response to diffusible signal molecules. Bacterial cells sense their population density through a sophisticated cell to cell communication system and trigger expression of particular genes. Tne first system of density-dependent regulation was studied in detail with the luminescence of Photobacterium fischeri (formerly known as Vibrio fischeri) by Bassler et al., 1997. Eventually, they discovered that 3-oxo-N-(tetrahydro-2-oxo-3-furanyl) hexanamid or N-3-(oxohexanoyl) homoserine lactone (OHHL) was responsible the agent in the broth that induced luminescence. Followed by this many researchers have confirmed that in Gram negative bacteria acyl-homoserine lactone is responsible for the cell to cell communication system.

In gram positive bacteria peptide and derivative peptide based signaling molecules seem to be the predominant mode of communication. During high cell density the marine bacteria can produce enzymes, surfactants, toxins, and antibiotics by the chemical signal communication. Marine epibiotic bacteria are also known to produce compounds active against drug resistant hospital pathogen by the cross species induction method. Building on assays described by Austin (Billaud and Austin 1990) a screening procedure has been developed in which marine bacteria are challenged by exposing them to terrestrial bacteria prior to assay of antimicrobial compounds. Hence in this present investigation it is proposed to find out the ability of sea weed epibiotic bacterial organism to produce antibacterial compounds through quorum sensing.

MATERIALS AND METHODS:

SAMPLE COLLECTION:

Seaweed samples were collected from Gulf of Mannar Marine Biosphere Reserve and identified up to species level by using CMFRI bulletin (14) as follows:

Table 1. List of Seaweeds species collected for the present study

SPECIES NAME FAMILY

Halimeda gracilis Chlorophyceae

Ulva lactuca Chlorophyceae

Microdictyon tenunis Chlorophyceae

Chondrococcus hornemonii Chlorophyceae

Enteromorpha intestinalis Chlorophyceae

Caulerpa cupressoides Chlorophyceae

Caulerpa racemosa Chlorophyceae

Dictyota dichotoma Phaeophyceae

Turbinaria ornata Phaeophyceae

Padina gymnospora Phaeophyceae

Sargassum cinearifolium Phaeophyceae

Dictyota batryensis Phaeophyceae

Sargassum sps Phaeophyceae

Hypnea musciformis Rhodophyceae

Acanthophora dendroides Rhodophyceae

Jania rubens Rhodophyceae

Hypnea valentiae Rhodophyceae

Hypnea pannose Rhodophyceae

Hypnea esperi Rhodophyceae

Acanthophora spicifera Rhodophyceae

ISOLATION OF EPIPHYTIC BACTERIA

The collected seaweed samples were thoroughly washed with sterile seawater to removes the loosely attached bacteria/particles. Seaweed fronds were scrubbed with sterile cotton swabs to obtain epiphytic bacteria. Epiphytic bacterial organism in the swab were inoculated in sterile peptone broth (50% sea water) and incubated at 28°C in an incubated shaker (220 rpm / min) for overnight. After the incubation period the enriched cultures were serially diluted up to 10-8 concentration and 200 microlitre of each diluted samples were transferred into the nutrient agar plate (50% sea water). The plates were incubated at 28°C for 5 days and the plates with crowded colonies were selected. In the crowded plates those colonies, which showed the sign of inhibition zone around its margin to the neighboring colony, were selected and considered as producer strain. The neighboring sensitive colonies were treated as inducer strain. Both producer and inducer strains were streaked repeatedly until to get pure culture. The pure culture were properly labeled and subjected to the quorum sensing analysis.

QUORUM SENSING

EXPERIMENT NUMBER 1

In this present study, the producer and inducer strains were cross reacted to find out the production of antibiotic compound through quorum sensing. Totally three set of cultures were maintained as follows (along with one as control).

A. Live cells of producer and inducer strains

B. Live cells of producer strain alone

C. Live cells of inducer strain alone

In culture system A 200ul of 16 hours old broth culture of both producer and inducer strains were added to the 15 ml of nutrient broth.

In culture system B 200ul of 16 hours old producer strain alone was inoculated.

In culture system C 200ul of 16 hours old inducer strain alone was inoculated.

All the cultures were incubated at 28°C for 5 days. After the incubation period the cultures were centrifuged at 10,000 rpm for 15mins. The supernatant was collected and subjected to antibacterial assay with respective inducer strain.

EXPERIMENT NUMBER 2

In this experiment, culture supernatant was obtained as per the procedure given in the experiment 1. 50ml of supernatant was mixed with equal volume of 80% methanol and 1% acetic acid mixture and it was shaked thoroughly in a separating funnel. Finally the methanol and acetic acid fractions were collected and concentrated by evaporation using water bath at 55°C. The viscous colloidal residues were resuspended in 600 microlitre of 50% methanol and it was used for antibacterial assay against different test organism.

TEST ORGANISMS:

1. Epiphytic Vibrio from seaweeds

2. Vibrio from primary film

3. Vibrio from Sediments

4. Pathogenic bacteria such as Escherichia coli, Staphylococcus aureus, Salmonella sp. and Proteus sp

The test organisms Vibrio species were isolated from seaweed as epiphyles, biofilm, sediment and puffer fish by using TCBS medium (Hi media) The pathogenic bacteria were collected from clinical laboratories.

ANTIBIOTIC ASSAYS

Antibiotic activity was performed in duplicate using a standard paper disc diffusion method as well as well assay. In well assay 10mm in diameter wells were made in marine agar plates and the plates were swabbed with 16 hours old inducer strain. To these wells 200ul of cell free supernatant were added to each well. In paper disc assay the Watmann no.1 filter paper discs (6mm in diameter) were saturated with 200ul of cell free supernatant. The impregnant discs were Dlaced in the centre of the plates swabbed with test organisms. The plates were Incubated at 37°C overnight and observed for inhibition zone. The zone of inhibition was measured as the distance from the border of paper disc to the edge of the clear zone and expressed in mm.

BACTERIAL IDENTIFICATION

The organisms responded to the quorum sensing process alone were identified by the following biochemical analysis.

Colony morphology, Gram staining, Motility test, Oxidase test, Catalase test, Indole Production, Methyl red test, Voges Proskauer test, Citrate Utilization test, Triple sugar Iron test, Nitrate reduction test, Lactose fermentation, Urease test

Starch hydrolysis test, Protein hydrolysis test, Lipid hydrolysis test, Oxidative / Fermentative test, Salt concentration (0%, 3%, 5%, 7%, 10%), TCBS, Growth in Temperature, 42°C and 47°C

All the above mentioned biochemical tests were performed by following standard methodology given in the Microbiological Laboratory Manual by James 3.Cappuccino (1999).

RESULTS AND DISCUSSION:

QUORUM SENSING/CROSS SPECIES INDUCTION ANALYSIS

In the present investigation totally 54 isolates were collected out of seaweed species. Among 54 isolates, 17 of them are producer strain, another 17 are the inducer strain rest of 20 isolates is normal and not showing any signs of activity (Table.2).

a) Among these 17 producers strain 6 strains were isolated from Hypnea musiformis. 6 from Gracillaria edulis, 4 from Ulva lactuca & 1 from Sediment.

b) Among these 17-inducer strain 6 strains were isolated from Hypnea musiformis, 6 from Gracillaria edulis, 4 from Ulva lactuca & 1 from sediment.

All the 17 strains were named as

PRODUCERS STAINS

BrA+, BrB+, BrC+, BrD+, BrE+, BrF+ Hypnea musiformis

GcA+, GcB+, GcC+, GcD+, GcE+, GcF+ Gracillaria edulis

U1+, U2+, U3+, U4+ Ulva lactuca

SA+ Sediment

INDUCER STRAIN

BrA-, BrB-, BrC-, BrD-, BrE-, BrF- Hypnea musiformis

GcA-, GcB-, GcC-, GcD- GcE-, GcF- Gracillaria edulis

U1-, U2-, U3-, U4- Ulva lactuca

SA- Sediment

In this experiment among 17 Producer and Inducer strains only 3 of them have responded to the quorum sensing principle. (BrB+/BrB-), (GcC+/GcC) and (SA+/SA-)

Table 2: The results of Quorum Sensing analysis of epibiotic bacterial isolates from seaweeds.

Seaweed sample Producer organism Inducer organism Cross-species producer with inducer Cross-species supernatant test with inducer Zone of clearance (mm)

Hypnea musiformis

1. BrA+

2. BrB+

3. BrC+

4. BrD+

5. BrE+

6. BrF+ BrA-

BrB-

BrC-

BrD-

BrE-

BrF- Br A+ /Br A-

Br B+ /Br B-

Br C+/Br C-

Br D+/Br D-

Br E+/Br E-

Br F+/Br F- BrA-

Br B-

BrC-

BrD-

BrE-

BrF- NIL

39

NIL

NIL

NIL

NIL

Gracillaria

edulis 7. GcA+

8. GcB+

9. GcC+

10. GcD+

11. GcE+

12. GcF+ GcA-

GcB-

GcC-

GcD-

GcE-

GcF- Gc A+/GcA-

Gc B+/GcB-

Gc C+/GcC-

Gc D+/GcD-

Gc E+ /GcE-

Gc F+/GcF- GcA-

GcB-

GcC-

GcD-

GcE-

GcF- NIL

NIL

26

NIL

NIL

NIL

Ulva lactuca

13. U1+

14: U2+

15. U3+

16. U4+ U1-

U2-

U3-

U4- U1+/U1-

U2+/U2-

U3+/U3-

U4+/U4- U1-

U2-

U3-

U4- NIL

NIL

NIL

NIL

Sediment 17. SA+ SA- SA+/SA- SA- 28

c) The normal 20 bacterial strains isolated from 20 algal species were crossed with terrestrial bacteria such as E-coli, Staphylococcus aureus separately

This experiment does not showed any inhibition zones

Bacterial identification

The 3 producer and 3 inducer strains which were responded the quorum sensing principles alone were subjected to biochemical analysis for identification. The obtained results revealed that all the producer strains showed sings of Pseudomonas sps and the inducer strains showed signs of Vibrio sps. So, based on the obtained result all the producer strains seems to be a Pseudomonas sps where as all the Inducer strain belongs to the genus vibrio.

In the present investigation, it was aimed to produce the antibiotics from the seaweed epibionts through quorum sensing principle. The bacterial isolates of seaweed epibionts were identified as species of Pseudomonas and Vibrio from seaweeds Hypnea musiformis and Gracillaria edulis. In this study the Pseudomonas acts as a producer strain and Vibrio as inducer strain. The recent finding says that the seaweed epibionts having potential to control the metabolic activity of competitor organisms. Allison et al., 1998 reported that many bacterial strains up on attaching to a surface produce exopolysaccharides or exopolypeptides. In addition, it has been postulated that exopolysaccharides could mediate the attachment of the bacteria to the surface and induce metabolic changes.

The results of Vanderivere and Kirchman 1993 suggest that the addition of increased surface by adding sand will induce the exopolymer synthesis through the high cell density dependent system. In the same way the bacterial organisms attached to the surface of seaweed shows alteration of genes expression may be due to the response to the high competitive environment. When cell density increases the competition for space and nutrients are also increased. So the existing bacteria were forced to protect themselves in this competitive environment. Normally in this condition the bacteria will be activated to induce the expression of certain hidden genes in genetic material through quorum sensing. The quorum sensing is principles were active compounds (autoinducer) from bacterial cell will promote the expression of a particular hidden gene of other bacterial organism in a stressed condition.

Quorum sensing usually focused on the bacteria growing in homogeneous environment. However few studies have attempted to a study this principle in heterogeneous environment also. In this present investigation we have attempted to study both homogeneous as well as heterogeneous environment. In former one we have isolated producer strain in seaweed eipbionts and it shows inhibitory activity against the inducer organism at the same seaweed epibionts. Later producer strains from seaweed epibionts, were treated with various Vibrio organisms from different environment. The obtain result of this study shows that the producer strain are capable of secreting antibiotic compounds not only to their natural competitors in its own habitate but also to the pathogen inhabiting in a distant related environment.

In the gram negative bacteria AHSL is an active principle of quorum sensing. Our producer strain is also been identified as Pseudomonas sps. So in these organisms also active principle must falls under the AHSL. The cell-cell signaling mechanism can either require import of the signal and subsequent interaction with intracellular effectors or a two-component signaling system that transducers the information across the membrane. In V. harveyi genetic analysis of the density sensing apparatus has two independent density-sensing systems, and each is composed of a sensor-auto inducer pair; system one is composed of sensor I and Al -1, and system two is composed of sensor 2 and AI-2. The two densities - sensing system are redundant, because a null mutation in either system alone results in expression of hidden genes (Bassler, et al.,1999.).

The earlier genetic analysis in Pseudomonas reveals the Pseudomonas consist of two quorum sensing systems as Las R1-I and Rh1R-l and have linked with R and I genes, in addition recently a third Lux R homolog that is advanced to a cluster of quorum sensing - controlled (qsc) genes were detected. Las R is a transcriptional regulator that responses primarily to the Las I - generated signal and Rh1R is a transcriptional regularly that responses best to the Rhl -generated signal. In Pseudomonas auriginosa, at low population densities Las I produce a basel level of 3-O-C12-HSL. As density increases, 3-0-C12-HSL builds to a critical concentration, at which point interacts with LasR. This Las R -3-0-012-HSL complex that activates transcription of a number of genes [Whileley, et al., 1999].

We suggest that the above said mechanisms in Pseudomonas with quorum sensing principle might have occurred in the present study also. This induces the bacteria Pseudomonas in epibiotic seaweeds to secrete certain active compound against to the competitor Vibrio species.

In this present work the totally 54 isolates were screened from 20 different seaweed species out of which 34 species were showed the signs of quorum sensing i.e. 17 producer and 17 inducer strains, but when these organisms where subjected to quorum sensing principle in mixed culture only 3 them have responded. So the present study reveals around 17% of bacterial species isolated from seaweeds and sediment were responded to quorum sensing. According to the results of bacteria isolated from marine algae surfaces indicated that the incidence of antibiotic producing strains from this habitat was 20% where as that from sea water was only a few percent. In the present study also reveals more or less the same ratio in Pseudomonas spp. was observed. Our results also reveals a results of Kell et al., 1995; Stead et al., 1996; they have said the culture supernatant of Pseudomonas sps known to contain AHLS which induces the production of phenazine antibiotics. In this investigation due to time constraint, It was not attempted to identify the active compound secreted by Pseudomonas through quorum sensing, which may leave the space for the further intensive research in future.

In concluding this discussion, the quorum sensing is wider spread among bacterial population then was previously thought, (In Gram positive, Gram negative bacterial communication). Current assays for antimicrobial activities are inadequate because some antibiotic producing bacteria may require the presence of another bacterial species. These findings have important implication for the discovery of novel antimicrobial compounds from marine bacteria and may allow the development of new methods for screening novel compounds active against multidrug resistant bacteria.

CONCLUSION:

The present investigation was aimed to study the quorum sensing principle among seaweed epibiotic bacterial organisms. In the past few decades there was no findings of new novel antibacterial class compounds were identified. But, the pathogenic microorganisms show much higher rate of resistant development even to the potential antibiotics. So, there is an urgent need to discover new novel antibiotic compounds. The marine inhabitants such as microorganisms, seaweeds, invertebrates, etc., act as an undepleted source of wide range of natural products among which the seaweeds act as a potential source of antibiotic compounds. Currently the cross species induction / quorum sensing attracts the total attention of researchers in finding new novel drugs against multidrug resistant pathogenic microorganisms. So, the present study aim to find out the capability of seaweed epibiotic bacterial organisms to produce novel drugs against the animal and plant pathogens

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Whiteley, M., K.M.Lee, and E.P.Greenberg.1999. Identification of genes controlled by quorum sensing in Pseudomonas aeruginosa. Proc.Natl.Acad.Sci.USA.96:13904-13909.

Yotsu, T., Y.Meguro, A. Endo, M. Murate, H. Naold, and T. Yasumoto.1987.

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About the Author

P.VIJAYA BASKAR
PHD SCHOLAR
DEPT OF BIOTECHNOLOGY
DR.G.R.D.C.S
COIMBATORE



Jon Par's CEILING OF AN AUTO PARTS STORE Film# 773



Auto Signed Mariners Currently For Sale On eBay.

MARK LANGSTON Seattle Mariners 1986 Topps 495 Hand Signed Autograph Card Auto
MARK LANGSTON Seattle Mariners 1986 Topps 495 Hand Signed Autograph Card Auto
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MATT THORNTON Mariners 1999 Team Best 86 Rookie Hand Signed Autograph Card Auto
MATT THORNTON Mariners 1999 Team Best 86 Rookie Hand Signed Autograph Card Auto
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MATT YOUNG Seattle Mariners 1984 Donruss 362 Hand Signed Autograph Card Auto
MATT YOUNG Seattle Mariners 1984 Donruss 362 Hand Signed Autograph Card Auto
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MATT YOUNG Seattle Mariners 1984 Fleer 624 Hand Signed Autograph Card Auto
MATT YOUNG Seattle Mariners 1984 Fleer 624 Hand Signed Autograph Card Auto
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MATT YOUNG Seattle Mariners 1984 Topps 235 Hand Signed Autograph Card Auto
MATT YOUNG Seattle Mariners 1984 Topps 235 Hand Signed Autograph Card Auto
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RICK SWEET Seattle Mariners 1984 Fleer 621 Hand Signed Autograph Card Auto
RICK SWEET Seattle Mariners 1984 Fleer 621 Hand Signed Autograph Card Auto
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SHAWN ESTES Seattle Mariners 1994 Bowman 473 Hand Signed Autograph Card Auto
SHAWN ESTES Seattle Mariners 1994 Bowman 473 Hand Signed Autograph Card Auto
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SPIKE OWEN Seattle Mariners 1984 Topps 413 Hand Signed Autograph Card Auto
SPIKE OWEN Seattle Mariners 1984 Topps 413 Hand Signed Autograph Card Auto
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THOMAS HUBBARD Sea Mariners 2004 SP Rookie Hand Signed Autograph Card RC Auto
THOMAS HUBBARD Sea Mariners 2004 SP Rookie Hand Signed Autograph Card RC Auto
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Michael Pineda autographed topps baseball card yankees mariners signed auto
Michael Pineda autographed topps baseball card yankees mariners signed auto
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KEN GRIFFEY JR SIGNED AUTO BASEBALL BALL PSA DNA C42236 MARINERS REDS
KEN GRIFFEY JR SIGNED AUTO BASEBALL BALL PSA DNA C42236 MARINERS REDS
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BRETT HINCHLIFFE Mariners 1999 Skybox Premium RC Hand Signed Autograph Card Auto
BRETT HINCHLIFFE Mariners 1999 Skybox Premium RC Hand Signed Autograph Card Auto
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Jeff Clement Signed Auto 2009 Topps Allen Ginters 247 Seattle Mariners AG
Jeff Clement Signed Auto 2009 Topps Allen Ginters 247 Seattle Mariners AG
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Matt Mangin Signed Auto 2011 Topps Heritage 321 Mariners Tampa Rays Autograph
Matt Mangin Signed Auto 2011 Topps Heritage 321 Mariners Tampa Rays Autograph
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Ken Griffey Jr Signed Bobby Brown OALB PSA DNA Auto Mariners Reds
Ken Griffey Jr Signed Bobby Brown OALB PSA DNA Auto Mariners Reds
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Wladimir Balentien signed topps 2008 57 Auto Mariners RC
Wladimir Balentien signed topps 2008 57 Auto Mariners RC
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Miguel Batista signed topps 2008 352 Auto Mariners
Miguel Batista signed topps 2008 352 Auto Mariners
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Ken Griffey Jr photo Signed Mariners Reds Auto NICE Graph by Future HOFer
Ken Griffey Jr photo Signed Mariners Reds Auto NICE Graph by Future HOFer
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DANNY HULTZEN AUTOGRAPHED AUTO SIGNED BASEBALL SEATTLE MARINERS COA
DANNY HULTZEN AUTOGRAPHED AUTO SIGNED BASEBALL SEATTLE MARINERS COA
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Danny Hultzen Signed auto Seattle Mariners Baseball SEATTLE MARINERS Autograph
Danny Hultzen Signed auto Seattle Mariners Baseball SEATTLE MARINERS Autograph
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Casper Wells Signed auto Seattle Mariners Baseball SEATTLE MARINERS Autograph
Casper Wells Signed auto Seattle Mariners Baseball SEATTLE MARINERS Autograph
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PSA DNA RookieGRAPH Mariners HAT AUTO signed ADAM JONES Autograph Orioles
PSA DNA RookieGRAPH Mariners HAT AUTO signed ADAM JONES Autograph Orioles
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STEVE BALBONI autograph 1989 TOPPS signed card MARINERS auto
STEVE BALBONI autograph 1989 TOPPS signed card MARINERS auto
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SCOTT BRADLEY autograph 1989 TOPPS signed card MARINERS auto
SCOTT BRADLEY autograph 1989 TOPPS signed card MARINERS auto
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GREG BRILEY autograph 1989 TOPPS signed card MARINERS auto
GREG BRILEY autograph 1989 TOPPS signed card MARINERS auto
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DARNELL COLES autograph 1989 TOPPS signed card MARINERS auto
DARNELL COLES autograph 1989 TOPPS signed card MARINERS auto
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MICKEY BRANTLEY autograph 1989 TOPPS signed card MARINERS auto
MICKEY BRANTLEY autograph 1989 TOPPS signed card MARINERS auto
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DAVE VALLE autograph 1989 TOPPS signed card MARINERS auto
DAVE VALLE autograph 1989 TOPPS signed card MARINERS auto
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JIM SNYDER autograph 1989 TOPPS signed card MARINERS auto
JIM SNYDER autograph 1989 TOPPS signed card MARINERS auto
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STEVE TROUT autograph 1989 TOPPS signed card MARINERS auto
STEVE TROUT autograph 1989 TOPPS signed card MARINERS auto
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93 Score Ken Griffey jr auto signed card Seattle Mariners
93 Score Ken Griffey jr auto signed card Seattle Mariners
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BGS 95 10 AUTO 2007 Bowman Sterling signed Blake Beavan Mariners autograph
BGS 95 10 AUTO 2007 Bowman Sterling signed Blake Beavan Mariners autograph
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RAFAEL SORIANO DONRUSS CHAMPIONS NEW YORK YANKEES SIGNED AUTO 490 500 MARINERS
RAFAEL SORIANO DONRUSS CHAMPIONS NEW YORK YANKEES SIGNED AUTO 490 500 MARINERS
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RANDY JOHNSON 2000 SKYBOX DOMINION AUTO SIGNED MARINERS DIAMONDBACKS YANKEES
RANDY JOHNSON 2000 SKYBOX DOMINION AUTO SIGNED MARINERS DIAMONDBACKS YANKEES
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FREDDY GARCIA AUTO 2000 Fleer 152 signed autograph MARINERS YANKEES WHITE SOX
FREDDY GARCIA AUTO 2000 Fleer 152 signed autograph MARINERS YANKEES WHITE SOX
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1973 Topps Gaylord Perry 400 Signed Autograph AUTO HOF Giants Mariners
1973 Topps Gaylord Perry 400 Signed Autograph AUTO HOF Giants Mariners
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KEN GRIFFEY JR SIGNED MARINERS REDS ROOKIE AUTO AUTOGRAPHED BASEBALL THE KID
KEN GRIFFEY JR SIGNED MARINERS REDS ROOKIE AUTO AUTOGRAPHED BASEBALL THE KID
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1994 1995 Alex Rodriguez RC Year Signed Hat MINT Auto Mariners
1994 1995 Alex Rodriguez RC Year Signed Hat MINT Auto Mariners
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Taijuan Walker Seattle Mariners hand signed auto photo
Taijuan Walker Seattle Mariners hand signed auto photo
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BILL STEIN AUTO SIGNED 1984 TOPPS 758 TEXAS RANGERS SEATTLE MARINERS CHICAGO WS
BILL STEIN AUTO SIGNED 1984 TOPPS 758 TEXAS RANGERS SEATTLE MARINERS CHICAGO WS
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1990 Topps Mario Diaz 781 Signed Autograph AUTO Mariners RARE
1990 Topps Mario Diaz 781 Signed Autograph AUTO Mariners RARE
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Matt Tuiasosopo Signed 2004 Bowman BDP Auto Mariners
Matt Tuiasosopo Signed 2004 Bowman BDP Auto Mariners
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HAROLD REYNOLDS autographed baseball card Seattle Mariners auto
HAROLD REYNOLDS autographed baseball card Seattle Mariners auto
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2012 Team Signed Clinton Lumberkings SEATTLE MARINERS Auto Sheet Autographed
2012 Team Signed Clinton Lumberkings SEATTLE MARINERS Auto Sheet Autographed
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1996 Jeff Harris Auto SEATTLE MARINERS Autographed Signed Fleer Rookie Card
1996 Jeff Harris Auto SEATTLE MARINERS Autographed Signed Fleer Rookie Card
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Alan Hepple signed Maine Mariners AHL hockey photo autographed
Alan Hepple signed Maine Mariners AHL hockey photo autographed
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Mariners Jesus Montero Auto signed ball COA Steiner MLB
Mariners Jesus Montero Auto signed ball COA Steiner MLB
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Andy Benes signed Padres Baseball card autographed
Andy Benes signed Padres Baseball card autographed
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Andy Benes signed Cardinals Baseball card autographed
Andy Benes signed Cardinals Baseball card autographed
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Jesus Montero Signed Auto OML Baseball Steiner Hologram COA Seattle Mariners
Jesus Montero Signed Auto OML Baseball Steiner Hologram COA Seattle Mariners
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JEFF HARRIS AUTOGRAPH AUTO SIGNED BASEBALL CARD ed 233 800 SEATTLE MARINERS
JEFF HARRIS AUTOGRAPH AUTO SIGNED BASEBALL CARD ed 233 800 SEATTLE MARINERS
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signed auto PETE OBRIEN Texas Rangers 1988 Donruss Mariners Indians
signed auto PETE OBRIEN Texas Rangers 1988 Donruss Mariners Indians
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signed auto Ed EDWIN NUNEZ Seattle Mariners 1984 Donruss Tigers Puerto Rico
signed auto Ed EDWIN NUNEZ Seattle Mariners 1984 Donruss Tigers Puerto Rico
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signed auto RICKY NELSON Seattle Mariners 1985 Topps
signed auto RICKY NELSON Seattle Mariners 1985 Topps
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signed auto JACK PERCONTE Cleveland Indians 1983 Donruss Mariners
signed auto JACK PERCONTE Cleveland Indians 1983 Donruss Mariners
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signed auto DENNIS POWELL Seattle Mariners 1988 Topps Dodgers
signed auto DENNIS POWELL Seattle Mariners 1988 Topps Dodgers
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signed auto GREG PIRKL Seattle Mariners 1993 Donruss
signed auto GREG PIRKL Seattle Mariners 1993 Donruss
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1 TAIJUAN WALKER Mariners Signed 2010 Bowman Draft BDP Card AUTO Autograph
1 TAIJUAN WALKER Mariners Signed 2010 Bowman Draft BDP Card AUTO Autograph
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2002 ICHIRO SUZUKI AUTOGRAPH PHOTO AUTO SIGN SIGNED SEATTLE MARINERS JAPAN
2002 ICHIRO SUZUKI AUTOGRAPH PHOTO AUTO SIGN SIGNED SEATTLE MARINERS JAPAN
Paypal   US $199.00
Taijuan Walker Signed 2010 Bowman Draft Card Auto Seattle Mariners
Taijuan Walker Signed 2010 Bowman Draft Card Auto Seattle Mariners
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2007 RYAN GARKO TOPPS CO SIGNERS AUTOGRAPHED AUTO CARD SS RG INDIANS MARINERS
2007 RYAN GARKO TOPPS CO SIGNERS AUTOGRAPHED AUTO CARD SS RG INDIANS MARINERS
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1986 TOPPS TRADED 108T DANNY TARTABULL ROOKIE SIGNED CARD AUTO MARINERS
1986 TOPPS TRADED 108T DANNY TARTABULL ROOKIE SIGNED CARD AUTO MARINERS
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1985 TOPPS 404 BILLY SWIFT TEAM USA ROOKIE SIGNED CARD AUTO MARINERS
1985 TOPPS 404 BILLY SWIFT TEAM USA ROOKIE SIGNED CARD AUTO MARINERS
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EDGAR MARTINEZ Signed 1991 Ultra PSA DNA Mariners Autograph Seattle Slabbed Auto
EDGAR MARTINEZ Signed 1991 Ultra PSA DNA Mariners Autograph Seattle Slabbed Auto
Paypal   US $22.99
Mariners BOBBY MADRITSCH Auto Signed MLB Baseball
Mariners BOBBY MADRITSCH Auto Signed MLB Baseball
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Mariners JAY BUHNER Auto Signed Official MLB Baseball
Mariners JAY BUHNER Auto Signed Official MLB Baseball
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MARINERSYANKEES ALEX RODRIGUEZ SIGNED AUTO JERSEY INSCRIPTON 40 40 CLUB AROD CA
MARINERSYANKEES ALEX RODRIGUEZ SIGNED AUTO JERSEY INSCRIPTON 40 40 CLUB AROD CA
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GAYLORD PERRY Auto Signed Baseball Photo HOF GIANTS INDIANS RANGERS MARINERS
GAYLORD PERRY Auto Signed Baseball Photo HOF GIANTS INDIANS RANGERS MARINERS
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LANCE PARRISH Auto Signed Baseball Photo TIGERS PHILLIES ANGELS MARINERS
LANCE PARRISH Auto Signed Baseball Photo TIGERS PHILLIES ANGELS MARINERS
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JOHN OLERUD Auto Signed Baseball Photo BLUE JAYS METS MARINERS YANKEES RED SOX
JOHN OLERUD Auto Signed Baseball Photo BLUE JAYS METS MARINERS YANKEES RED SOX
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SIGNED BASEBALL CARD AUTO 1981 DONRUSS GLENN ABBOTT SEATTLE MARINERS
SIGNED BASEBALL CARD AUTO 1981 DONRUSS GLENN ABBOTT SEATTLE MARINERS
Paypal   US $39.87
2006 BOWMAN DP 38 Doug Fister SEATTLE MARINERS SIGNED AUTOGRAPH AUTO COA
2006 BOWMAN DP 38 Doug Fister SEATTLE MARINERS SIGNED AUTOGRAPH AUTO COA
Paypal   US $14.00
2003 TOPPS 663 Evel Bastida Martinez MARINERS SIGNED AUTOGRAPH AUTO COA
2003 TOPPS 663 Evel Bastida Martinez MARINERS SIGNED AUTOGRAPH AUTO COA
Paypal   US $20.00
2005 BOWMAN BDP 16 Mike Morse SEATTLE MARINERS SIGNED AUTOGRAPH AUTO COA
2005 BOWMAN BDP 16 Mike Morse SEATTLE MARINERS SIGNED AUTOGRAPH AUTO COA
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GENE WALTER SIGNED AUTO CARD MARINERS 89 UPPER DECK
GENE WALTER SIGNED AUTO CARD MARINERS 89 UPPER DECK
Paypal   US $7.00
JUSTIN SMOAK SIGNED AUTOGRAPH AUTO MLB BASEBALL MARINERS COA
JUSTIN SMOAK SIGNED AUTOGRAPH AUTO MLB BASEBALL MARINERS COA
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RAMON VAZQUEZ SIGNED AUTO CARD MARINERS 01 DONRUSS
RAMON VAZQUEZ SIGNED AUTO CARD MARINERS 01 DONRUSS
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JUSTIN SMOAK Signed OML Baseball Mariners JSA Autograph Seattle Rangers Auto
JUSTIN SMOAK Signed OML Baseball Mariners JSA Autograph Seattle Rangers Auto
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Another great place to shop for Auto Signed Mariners products is Amazon.
Fun Home: A Family Tragicomic Fun Home: A Family Tragicomic
List Price: $13.95
Sale Price: $5.00
Used From: $4.40

In this groundbreaking, bestselling graphic memoir, Alison Bechdel charts her fraught relationship with her late father. In her hands, personal history becomes a work of amazing subtlety and power, written with controlled force and enlivened with humor, rich literary allusion, and heartbreaking detail...

The Philosophy of Andy Warhol : (From A to B and Back Again) The Philosophy of Andy Warhol : (From A to B and Back Again)
List Price: $14.95
Sale Price: $4.88
Used From: $0.73

A loosely formed autobiography by Andy Warhol, told with his trademark blend of irony and detachment   In The Philosophy of Andy Warhol—which, with the subtitle "(From A to B and Back Again)," is less a memoir than a collection of riffs and reflections—he talks about love, sex, food, beauty, fame, work, money, and success; about New York, America, and his childhood in McKeesport, Pennsylvania; about his good times and bad in New York, the explosion of his career in the sixties, and his life among celebrities.

A Thousand Days: John F. Kennedy in the White House A Thousand Days: John F. Kennedy in the White House
List Price: $18.95
Sale Price: $6.62
Used From: $2.85

As special assistant to the president, Arthur Schlesinger witnessed firsthand the politics and personalities that influenced the now legendary Kennedy administration. Schlesinger’s close relationship with JFK, as a politician and as a friend, has resulted in this authoritative yet intimate account in which the president “walks through the pages, from first to last, alert, alive, amused and amusing” (John Kenneth Galbraith)...

Michael Pineda Signed Autographed Baseball & Holder Plus Card Seattle Mariners Coa Michael Pineda Signed Autographed Baseball & Holder Plus Card Seattle Mariners Coa
Sale Price: $59.99

YOU ARE LOOKING AT A NICE SIGNED BASEBALL

Ichiro Suzuki Autographed/Hand Signed 2001 UD Ultimate Collection Game Used Base Card Holo & PSA/DNA Ichiro Suzuki Autographed/Hand Signed 2001 UD Ultimate Collection Game Used Base Card Holo & PSA/DNA
Sale Price: $522.95

This is a 2001 UD Ultimate Collection Game Used Base Card that has been hand signed by Ichiro Suzuki. The autograph has been authenticated and slabbed by PSA/DNA. This card also has the Official Ichiro Hologram on the back.



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