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Proteome changes in platelets activated by arachidonic acid, collagen, and thrombin

BACKGROUND: Platelets are small anucleated blood particles that play a key role in the control of bleeding. Platelets need to be activated to perform their functions and participate in hemostasis. The process of activation is accompanied by vast protein reorganization and posttranslational modificat...

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Autores principales: Májek, Pavel, Reicheltová, Zuzana, Štikarová, Jana, Suttnar, Jiří, Sobotková, Alžběta, Dyr, Jan E
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2996359/
https://www.ncbi.nlm.nih.gov/pubmed/21073729
http://dx.doi.org/10.1186/1477-5956-8-56
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author Májek, Pavel
Reicheltová, Zuzana
Štikarová, Jana
Suttnar, Jiří
Sobotková, Alžběta
Dyr, Jan E
author_facet Májek, Pavel
Reicheltová, Zuzana
Štikarová, Jana
Suttnar, Jiří
Sobotková, Alžběta
Dyr, Jan E
author_sort Májek, Pavel
collection PubMed
description BACKGROUND: Platelets are small anucleated blood particles that play a key role in the control of bleeding. Platelets need to be activated to perform their functions and participate in hemostasis. The process of activation is accompanied by vast protein reorganization and posttranslational modifications. The goal of this study was to identify changes in proteins in platelets activated by different agonists. Platelets were activated by three different agonists - arachidonic acid, collagen, and thrombin. 2D SDS-PAGE (pI 4-7) was used to separate platelet proteins. Proteomes of activated and resting platelets were compared with each other by Progenesis SameSpots statistical software; and proteins were identified by nanoLC-MS/MS. RESULTS: 190 spots were found to be significantly different. Of these, 180 spots were successfully identified and correspond to 144 different proteins. Five proteins were found that had not previously been identified in platelets: protein CDV3 homolog, protein ETHE1, protein LZIC, FGFR1 oncogene partner 2, and guanine nucleotide-binding protein subunit beta-5. Using spot expression profile analysis, we found two proteins (WD repeat-containing protein 1 and mitochondrial glycerol-3-phosphate dehydrogenase) that may be part of thrombin specific activation or signal transduction pathway(s). CONCLUSIONS: Our results, characterizing the differences within proteins in both activated (by various agonists) and resting platelets, can thus contribute to the basic knowledge of platelets and to the understanding of the function and development of new antiplatelet drugs.
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spelling pubmed-29963592010-12-03 Proteome changes in platelets activated by arachidonic acid, collagen, and thrombin Májek, Pavel Reicheltová, Zuzana Štikarová, Jana Suttnar, Jiří Sobotková, Alžběta Dyr, Jan E Proteome Sci Research BACKGROUND: Platelets are small anucleated blood particles that play a key role in the control of bleeding. Platelets need to be activated to perform their functions and participate in hemostasis. The process of activation is accompanied by vast protein reorganization and posttranslational modifications. The goal of this study was to identify changes in proteins in platelets activated by different agonists. Platelets were activated by three different agonists - arachidonic acid, collagen, and thrombin. 2D SDS-PAGE (pI 4-7) was used to separate platelet proteins. Proteomes of activated and resting platelets were compared with each other by Progenesis SameSpots statistical software; and proteins were identified by nanoLC-MS/MS. RESULTS: 190 spots were found to be significantly different. Of these, 180 spots were successfully identified and correspond to 144 different proteins. Five proteins were found that had not previously been identified in platelets: protein CDV3 homolog, protein ETHE1, protein LZIC, FGFR1 oncogene partner 2, and guanine nucleotide-binding protein subunit beta-5. Using spot expression profile analysis, we found two proteins (WD repeat-containing protein 1 and mitochondrial glycerol-3-phosphate dehydrogenase) that may be part of thrombin specific activation or signal transduction pathway(s). CONCLUSIONS: Our results, characterizing the differences within proteins in both activated (by various agonists) and resting platelets, can thus contribute to the basic knowledge of platelets and to the understanding of the function and development of new antiplatelet drugs. BioMed Central 2010-11-12 /pmc/articles/PMC2996359/ /pubmed/21073729 http://dx.doi.org/10.1186/1477-5956-8-56 Text en Copyright ©2010 Májek et al; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research
Májek, Pavel
Reicheltová, Zuzana
Štikarová, Jana
Suttnar, Jiří
Sobotková, Alžběta
Dyr, Jan E
Proteome changes in platelets activated by arachidonic acid, collagen, and thrombin
title Proteome changes in platelets activated by arachidonic acid, collagen, and thrombin
title_full Proteome changes in platelets activated by arachidonic acid, collagen, and thrombin
title_fullStr Proteome changes in platelets activated by arachidonic acid, collagen, and thrombin
title_full_unstemmed Proteome changes in platelets activated by arachidonic acid, collagen, and thrombin
title_short Proteome changes in platelets activated by arachidonic acid, collagen, and thrombin
title_sort proteome changes in platelets activated by arachidonic acid, collagen, and thrombin
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2996359/
https://www.ncbi.nlm.nih.gov/pubmed/21073729
http://dx.doi.org/10.1186/1477-5956-8-56
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