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血小板衍生微粒的定量蛋白质组学分析揭示了在不同生理激动剂刺激下独特的蛋白质特征。

Quantitative proteomics analysis of platelet-derived microparticles reveals distinct protein signatures when stimulated by different physiological agonists.

作者信息

Milioli Marco, Ibáñez-Vea Maria, Sidoli Simone, Palmisano Giuseppe, Careri Maria, Larsen Martin R

机构信息

Department of Chemistry, University of Parma, 43124 Parma, Italy.

Department of Biochemistry and Molecular Biology, University of Southern Denmark, DK-5230 Odense M, Denmark.

出版信息

J Proteomics. 2015 May 21;121:56-66. doi: 10.1016/j.jprot.2015.03.013. Epub 2015 Mar 30.

Abstract

UNLABELLED

Platelet-derived MPs (PMPs) are a heterogeneous population of microvesicles released from platelets upon activation and apoptosis. Different platelet activations may affect PMP protein profiles and roles in intercellular communication. Here, we performed a quantitative proteomics study to characterize the protein content of PMPs generated by four differentially activated platelet samples. We selected known physiological agonists for platelet activation such as ADP, thrombin and collagen. Thrombin, which is mostly used to generate PMPs in vitro, was set as control. Platelets were activated by following a known agonist strength scale in which ADP was the weakest activation and thrombin and collagen stimulations were the strongest ones. Our proteomic analysis allowed the quantification of 3383 proteins, of which 428 membrane and 131 soluble proteins were found as significantly different in at least one of the analyzed conditions. Activation with stronger agonists led to the enrichment of proteins related to platelet activation in PMPs. In addition, proteins involved in platelet degranulation and proteins from the electron transport chain were less abundant in PMPs when stronger activation was used. Collectively, our data describe the most detailed characterization of PMPs after platelet physiological activation. Furthermore, we show that PMP protein content is highly dependent on the type of physiological agonist involved in platelet stimulation.

BIOLOGICAL SIGNIFICANCE

Platelet-derived MPs (PMPs) are a population of vesicles generated upon platelet activation by various stimuli known to be involved in several physiological and pathological processes. This manuscript investigates the protein profile of PMPs obtained by performing four different activation protocols using mass spectrometry-based quantitative proteomics. By following a known physiological agonist strength scale our findings suggest a biological link between agonist strength and proteins associated to platelet mediated processes such as activation and degranulation. These data may provide new insights for understanding PMP biological role and formation.

摘要

未标记

血小板衍生的微泡(PMPs)是血小板在激活和凋亡时释放的异质性微泡群体。不同的血小板激活可能会影响PMP的蛋白质谱及其在细胞间通讯中的作用。在此,我们进行了一项定量蛋白质组学研究,以表征由四个差异激活的血小板样本产生的PMP的蛋白质含量。我们选择了已知的血小板激活生理激动剂,如ADP、凝血酶和胶原蛋白。凝血酶是体外产生PMPs最常用的,被设为对照。按照已知的激动剂强度 scale 激活血小板,其中ADP是最弱的激活剂,凝血酶和胶原蛋白刺激是最强的。我们的蛋白质组学分析能够定量3383种蛋白质,其中428种膜蛋白和131种可溶性蛋白在至少一种分析条件下有显著差异。用更强的激动剂激活导致PMPs中与血小板激活相关的蛋白质富集。此外,当使用更强的激活时,参与血小板脱颗粒的蛋白质和来自电子传递链的蛋白质在PMPs中含量较少。总体而言,我们的数据描述了血小板生理激活后PMPs最详细的特征。此外,我们表明PMP的蛋白质含量高度依赖于参与血小板刺激的生理激动剂类型。

生物学意义

血小板衍生的微泡(PMPs)是在血小板被各种已知参与多种生理和病理过程的刺激激活后产生的一群微泡。本手稿使用基于质谱的定量蛋白质组学,通过执行四种不同的激活方案来研究获得的PMP的蛋白质谱。按照已知的生理激动剂强度 scale,我们的研究结果表明激动剂强度与与血小板介导的过程(如激活和脱颗粒)相关的蛋白质之间存在生物学联系。这些数据可能为理解PMP的生物学作用和形成提供新的见解。

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