The synthesis of proteins in unnucleated blood platelets
Platelets are the smallest, unnucleated blood cells that play a key role in maintaining normal hemostasis. In the human body about 1x1011 platelets are formed every day, as a the result of complex processes of differentiation, maturation and fragmentation of megakaryocytes. Studies done over 4 decad...
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Index Copernicus International S.A.
2013-07-01
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doaj-53724d4afd2c4155bcc76c3208c8fd102020-11-24T23:39:28ZengIndex Copernicus International S.A.Postępy Higieny i Medycyny Doświadczalnej0032-54491732-26932013-07-016786368867267910.5604/17322693.1059587 The synthesis of proteins in unnucleated blood plateletsMichał BijakJoanna SalukMichał Błażej Ponczek PonczekPaweł NowakBarbara WachowiczPlatelets are the smallest, unnucleated blood cells that play a key role in maintaining normal hemostasis. In the human body about 1x1011 platelets are formed every day, as a the result of complex processes of differentiation, maturation and fragmentation of megakaryocytes. Studies done over 4 decades ago demonstrated that circulating in blood mature platelets can synthesize proteins. Recent discoveries confirm protein synthesis by unnucleated platelets in response to activation. Moreover, protein synthesis alters the phenotype and function of platelets. Platelets synthesize several proteins involved in hemostasis (COX, αIIbβ3, TF PAI-1, Factor XI, protein C inhibitor) and in inflammatory process (IL-1β, CCL5/RANTES). In spite of lack of transcription platelets have a stable mRNA transcripts with a long life correlated with platelet life span. Platelets also show expression of two important key regulators of translation eIF4E and EIF-2α and have a variety of miRNA molecules responsible for translational regulation. This article describes the historical overview of research on protein synthesis by platelets and presents the molecular mechanisms of protein synthesis in activated platelets (and synthesis of the most important platelet proteins).http://journals.indexcopernicus.com/fulltxt.php?ICID=1059587translation regulationtranslationprotein synthesisBlood Platelets |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Michał Bijak Joanna Saluk Michał Błażej Ponczek Ponczek Paweł Nowak Barbara Wachowicz |
spellingShingle |
Michał Bijak Joanna Saluk Michał Błażej Ponczek Ponczek Paweł Nowak Barbara Wachowicz The synthesis of proteins in unnucleated blood platelets Postępy Higieny i Medycyny Doświadczalnej translation regulation translation protein synthesis Blood Platelets |
author_facet |
Michał Bijak Joanna Saluk Michał Błażej Ponczek Ponczek Paweł Nowak Barbara Wachowicz |
author_sort |
Michał Bijak |
title |
The synthesis of proteins in unnucleated blood platelets |
title_short |
The synthesis of proteins in unnucleated blood platelets |
title_full |
The synthesis of proteins in unnucleated blood platelets |
title_fullStr |
The synthesis of proteins in unnucleated blood platelets |
title_full_unstemmed |
The synthesis of proteins in unnucleated blood platelets |
title_sort |
synthesis of proteins in unnucleated blood platelets |
publisher |
Index Copernicus International S.A. |
series |
Postępy Higieny i Medycyny Doświadczalnej |
issn |
0032-5449 1732-2693 |
publishDate |
2013-07-01 |
description |
Platelets are the smallest, unnucleated blood cells that play a key role in maintaining normal hemostasis. In the human body about 1x1011 platelets are formed every day, as a the result of complex processes of differentiation, maturation and fragmentation of megakaryocytes. Studies done over 4 decades ago demonstrated that circulating in blood mature platelets can synthesize proteins. Recent discoveries confirm protein synthesis by unnucleated platelets in response to activation. Moreover, protein synthesis alters the phenotype and function of platelets. Platelets synthesize several proteins involved in hemostasis (COX, αIIbβ3, TF PAI-1, Factor XI, protein C inhibitor) and in inflammatory process (IL-1β, CCL5/RANTES). In spite of lack of transcription platelets have a stable mRNA transcripts with a long life correlated with platelet life span. Platelets also show expression of two important key regulators of translation eIF4E and EIF-2α and have a variety of miRNA molecules responsible for translational regulation. This article describes the historical overview of research on protein synthesis by platelets and presents the molecular mechanisms of protein synthesis in activated platelets (and synthesis of the most important platelet proteins). |
topic |
translation regulation translation protein synthesis Blood Platelets |
url |
http://journals.indexcopernicus.com/fulltxt.php?ICID=1059587 |
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