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首页> 外文期刊>Journal of Molecular Biology >New Insights into the Mechanism of Chloroplast Protein Import and Its Integration with Protein Quality Control, Organelle Biogenesis and Development
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New Insights into the Mechanism of Chloroplast Protein Import and Its Integration with Protein Quality Control, Organelle Biogenesis and Development

机译:叶绿体蛋白质导入机制及其与蛋白质质量控​​制,细胞器生物发生和发展的整合的新见解

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The translocons at the outer (TOC) and the inner (TIC) envelope membranes of chloroplasts mediate the targeting and import of several thousand nucleus-encoded preproteins that are required for organelle biogenesis and homeostasis. The cytosolic events in preprotein targeting remain largely unknown, although cytoplasmic chaperones have been proposed to facilitate delivery to the TOC complex. Preprotein recognition is mediated by the TOC GTPase receptors Toc159 and Toc34. The receptors constitute a GTP-regulated switch, which initiates membrane translocation via Toc75, a member of the Omp85 (outer membrane protein 85)/TpsB (two-partner secretion system B) family of bacterial, plastid and mitochondrial beta-barrel outer membrane proteins. The TOC receptor systems have diversified to recognize distinct sets of preproteins, thereby maximizing the efficiency of targeting in response to changes in gene expression during developmental and physiological events that impact organelle function. The TOC complex interacts with the TIC translocon to allow simultaneous translocation of preproteins across the envelope. Both the two inner membrane complexes, the Tic110 and 1 MDa complexes, have been implicated as constituents of the TIC translocon, and it remains to be determined how they interact to form the TIC channel and assemble the import-associated chaperone network in the stroma that drives import across the envelope membranes. This review will focus on recent developments in our understanding of the mechanisms and diversity of the TOC-TIC systems. Our goal is to incorporate these recent studies with previous work and present updated or revised models for the function of TOC-TIC in protein import. (C) 2014 Elsevier Ltd. All rights reserved.
机译:叶绿体的外膜(TOC)和内膜(TIC)的translocon介导了细胞器生物发生和体内平衡所需的数千种核编码前蛋白的靶向和导入。尽管已经提出了胞质伴侣可以促进向TOC复合物的递送,但是在前蛋白靶向中的胞质事件仍然很大程度上未知。前蛋白识别是由TOC GTPase受体Toc159和Toc34介导的。受体构成一个由GTP调节的开关,该开关通过Toc75启动膜移位,Toc75是细菌,质体和线粒体β-桶外膜蛋白的Omp85(外膜蛋白85)/ TpsB(两分子分泌系统B)家族的成员。 。 TOC受体系统已经多样化,可以识别不同组的前蛋白,从而在影响细胞器功能的发育和生理事件中,最大化响应基因表达变化的靶向效率。 TOC复合物与TIC translocon相互作用,以允许前蛋白同时跨膜转运。两种内膜复合物Tic110和1 MDa复合物均被认为是TIC转运子的组成部分,尚需确定它们如何相互作用以形成TIC通道并在基质中组装与进口相关的伴侣网络。驱动器导入整个包膜。这篇综述将集中在我们对TOC-TIC系统的机制和多样性的理解上的最新进展。我们的目标是将这些最新研究与以前的工作相结合,并针对TOC-TIC在蛋白质进口中的功能提出更新或修订的模型。 (C)2014 Elsevier Ltd.保留所有权利。

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