Phosphoproteomic analysis of platelets activated by pro-thrombotic oxidized phospholipids and thrombin.

Specific oxidized phospholipids (oxPCCD36) promote platelet hyper-reactivity and thrombosis in hyperlipidemia via the scavenger receptor CD36, however the signaling pathway(s) induced in platelets by oxPCCD36 are not well defined. We have employed mass spectrometry-based tyrosine, serine, and threon...

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Main Authors: Alejandro Zimman, Bjoern Titz, Evangelia Komisopoulou, Sudipta Biswas, Thomas G Graeber, Eugene A Podrez
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2014-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3882224?pdf=render
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spelling doaj-615f4009372f4e6ebc66bcefa52a00c62020-11-25T00:23:38ZengPublic Library of Science (PLoS)PLoS ONE1932-62032014-01-0191e8448810.1371/journal.pone.0084488Phosphoproteomic analysis of platelets activated by pro-thrombotic oxidized phospholipids and thrombin.Alejandro ZimmanBjoern TitzEvangelia KomisopoulouSudipta BiswasThomas G GraeberEugene A PodrezSpecific oxidized phospholipids (oxPCCD36) promote platelet hyper-reactivity and thrombosis in hyperlipidemia via the scavenger receptor CD36, however the signaling pathway(s) induced in platelets by oxPCCD36 are not well defined. We have employed mass spectrometry-based tyrosine, serine, and threonine phosphoproteomics for the unbiased analysis of platelet signaling pathways induced by oxPCCD36 as well as by the strong physiological agonist thrombin. oxPCCD36 and thrombin induced differential phosphorylation of 115 proteins (162 phosphorylation sites) and 181 proteins (334 phosphorylation sites) respectively. Most of the phosphoproteome changes induced by either agonist have never been reported in platelets; thus they provide candidates in the study of platelet signaling. Bioinformatic analyses of protein phosphorylation dependent responses were used to categorize preferential motifs for (de)phosphorylation, predict pathways and kinase activity, and construct a phosphoproteome network regulating integrin activation. A putative signaling pathway involving Src-family kinases, SYK, and PLCγ2 was identified in platelets activated by oxPCCD36. Subsequent ex vivo studies in human platelets demonstrated that this pathway is downstream of the scavenger receptor CD36 and is critical for platelet activation by oxPCCD36. Our results provide multiple insights into the mechanism of platelet activation and specifically in platelet regulation by oxPCCD36.http://europepmc.org/articles/PMC3882224?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Alejandro Zimman
Bjoern Titz
Evangelia Komisopoulou
Sudipta Biswas
Thomas G Graeber
Eugene A Podrez
spellingShingle Alejandro Zimman
Bjoern Titz
Evangelia Komisopoulou
Sudipta Biswas
Thomas G Graeber
Eugene A Podrez
Phosphoproteomic analysis of platelets activated by pro-thrombotic oxidized phospholipids and thrombin.
PLoS ONE
author_facet Alejandro Zimman
Bjoern Titz
Evangelia Komisopoulou
Sudipta Biswas
Thomas G Graeber
Eugene A Podrez
author_sort Alejandro Zimman
title Phosphoproteomic analysis of platelets activated by pro-thrombotic oxidized phospholipids and thrombin.
title_short Phosphoproteomic analysis of platelets activated by pro-thrombotic oxidized phospholipids and thrombin.
title_full Phosphoproteomic analysis of platelets activated by pro-thrombotic oxidized phospholipids and thrombin.
title_fullStr Phosphoproteomic analysis of platelets activated by pro-thrombotic oxidized phospholipids and thrombin.
title_full_unstemmed Phosphoproteomic analysis of platelets activated by pro-thrombotic oxidized phospholipids and thrombin.
title_sort phosphoproteomic analysis of platelets activated by pro-thrombotic oxidized phospholipids and thrombin.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2014-01-01
description Specific oxidized phospholipids (oxPCCD36) promote platelet hyper-reactivity and thrombosis in hyperlipidemia via the scavenger receptor CD36, however the signaling pathway(s) induced in platelets by oxPCCD36 are not well defined. We have employed mass spectrometry-based tyrosine, serine, and threonine phosphoproteomics for the unbiased analysis of platelet signaling pathways induced by oxPCCD36 as well as by the strong physiological agonist thrombin. oxPCCD36 and thrombin induced differential phosphorylation of 115 proteins (162 phosphorylation sites) and 181 proteins (334 phosphorylation sites) respectively. Most of the phosphoproteome changes induced by either agonist have never been reported in platelets; thus they provide candidates in the study of platelet signaling. Bioinformatic analyses of protein phosphorylation dependent responses were used to categorize preferential motifs for (de)phosphorylation, predict pathways and kinase activity, and construct a phosphoproteome network regulating integrin activation. A putative signaling pathway involving Src-family kinases, SYK, and PLCγ2 was identified in platelets activated by oxPCCD36. Subsequent ex vivo studies in human platelets demonstrated that this pathway is downstream of the scavenger receptor CD36 and is critical for platelet activation by oxPCCD36. Our results provide multiple insights into the mechanism of platelet activation and specifically in platelet regulation by oxPCCD36.
url http://europepmc.org/articles/PMC3882224?pdf=render
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