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血小板分泌的细胞基础:新出现的结构/功能关系

The cellular basis of platelet secretion: Emerging structure/function relationships.

作者信息

Yadav Shilpi, Storrie Brian

机构信息

a Department of Physiology and Biophysics , University of Arkansas for Medical Sciences , Little Rock , AR , USA.

出版信息

Platelets. 2017 Mar;28(2):108-118. doi: 10.1080/09537104.2016.1257786. Epub 2016 Dec 23.

Abstract

Platelet activation has long been known to be accompanied by secretion from at least three types of compartments. These include dense granules, the major source of small molecules; α-granules, the major protein storage organelle; and lysosomes, the site of acid hydrolase storage. Despite ~60 years of research, there are still many unanswered questions about the cell biology of platelet secretion: for example, how are these secretory organelles organized to support cargo release and what are the key routes of cargo release, granule to plasma membrane or granule to canalicular system. Moreover, in recent years, increasing evidence points to the platelet being organized for secretion of the contents from other organelles, namely the dense tubular system (endoplasmic reticulum) and the Golgi apparatus. Conceivably, protein secretion is a widespread property of the platelet and its organelles. In this review, we concentrate on the cell biology of the α-granule and its structure/function relationships. We both review the literature and discuss the wide array of 3-dimensional, high-resolution structural approaches that have emerged in the last few years. These have begun to reveal new and unanticipated outcomes and some of these are discussed. We are hopeful that the next several years will bring rapid advances to this field that will resolve past controversies and be clinically relevant.

摘要

长期以来,人们已知血小板活化伴随着至少三种类型的区室分泌。这些区室包括致密颗粒,小分子的主要来源;α颗粒,主要的蛋白质储存细胞器;以及溶酶体,酸性水解酶的储存位点。尽管经过了约60年的研究,但关于血小板分泌的细胞生物学仍有许多未解决的问题:例如,这些分泌细胞器是如何组织以支持货物释放的,货物释放的关键途径是什么,是从颗粒到质膜还是从颗粒到小管系统。此外,近年来,越来越多的证据表明血小板被组织起来以分泌来自其他细胞器的内容物,即致密管状系统(内质网)和高尔基体。可以想象,蛋白质分泌是血小板及其细胞器的广泛特性。在本综述中,我们专注于α颗粒的细胞生物学及其结构/功能关系。我们既回顾了文献,也讨论了过去几年出现的各种三维高分辨率结构方法。这些方法已经开始揭示新的和意想不到的结果,其中一些将在文中进行讨论。我们希望在未来几年,该领域将取得快速进展,解决过去的争议并具有临床相关性。

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