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Stapled peptides as a new technology to investigate protein–protein interactions in human platelets

机译:装订肽是研究人血小板中蛋白质相互作用的新技术

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摘要

Platelets are blood cells with numerous crucial pathophysiological roles in hemostasis, cardiovascular thrombotic events and cancer metastasis. Platelet activation requires the engagement of intracellular signalling pathways that involve protein–protein interactions (PPIs). A better understanding of these pathways is therefore crucial for the development of selective anti-platelet drugs. New strategies for studying PPIs in human platelets are required to overcome limitations associated with conventional platelet research methods. For example, small molecule inhibitors can lack selectivity and are often difficult to design and synthesise. Additionally, development of transgenic animal models is costly and time-consuming and conventional recombinant techniques are ineffective due to the lack of a nucleus in platelets. Herein, we describe the generation of a library of novel, functionalised stapled peptides and their first application in the investigation of platelet PPIs. Moreover, the use of platelet-permeable stapled Bim BH3 peptides confirms the part of Bim in phosphatidyl-serine (PS) exposure and reveals a role for the Bim protein in platelet activatory processes. Our work demonstrates that functionalised stapled peptides are a complementary alternative to conventional platelet research methods, and could make a significant contribution to the understanding of platelet signalling pathways and hence to the development of anti-platelet drugs.
机译:血小板是在止血,心血管血栓事件和癌症转移中具有许多关键病理生理作用的血细胞。血小板激活需要参与涉及蛋白-蛋白相互作用(PPI)的细胞内信号通路。因此,更好地了解这些途径对于开发选择性抗血小板药物至关重要。需要新的研究人血小板中PPI的策略,以克服与常规血小板研究方法相关的局限性。例如,小分子抑制剂可能缺乏选择性,并且通常难以设计和合成。另外,转基因动物模型的开发是昂贵且费时的,并且常规重组技术由于血小板中缺乏核而无效。在本文中,我们描述了新颖的,功能化的固定肽库的产生及其在血小板PPI研究中的首次应用。此外,使用血小板可渗透的固定Bim BH3肽可证实Bim在磷脂酰丝氨酸(PS)暴露中的一部分,并揭示了Bim蛋白在血小板激活过程中的作用。我们的工作表明,功能化的固定肽是常规血小板研究方法的补充替代品,并且可以对理解血小板信号传导途径做出重要贡献,从而可以为抗血小板药物的开发做出重大贡献。

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