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IM30/Vipp1 与蓝细菌和叶绿体膜的特异性相互作用导致膜重塑,最终导致膜融合。

Specific interaction of IM30/Vipp1 with cyanobacterial and chloroplast membranes results in membrane remodeling and eventually in membrane fusion.

机构信息

Institute of Pharmacy and Biochemistry, Johannes Gutenberg-University Mainz, Johann-Joachim-Becher-Weg 30, 55128 Mainz, Germany.

Institute of Pharmacy and Biochemistry, Johannes Gutenberg-University Mainz, Johann-Joachim-Becher-Weg 30, 55128 Mainz, Germany.

出版信息

Biochim Biophys Acta Biomembr. 2017 Apr;1859(4):537-549. doi: 10.1016/j.bbamem.2016.09.025. Epub 2016 Sep 30.

Abstract

The photosynthetic light reaction takes place within the thylakoid membrane system in cyanobacteria and chloroplasts. Besides its global importance, the biogenesis, maintenance and dynamics of this membrane system are still a mystery. In the last two decades, strong evidence supported the idea that these processes involve IM30, the inner membrane-associated protein of 30kDa, a protein also known as the vesicle-inducing protein in plastids 1 (Vipp1). Even though we just only begin to understand the precise physiological function of this protein, it is clear that interaction of IM30 with membranes is crucial for biogenesis of thylakoid membranes. Here we summarize and discuss forces guiding IM30-membrane interactions, as the membrane properties as well as the oligomeric state of IM30 appear to affect proper interaction of IM30 with membrane surfaces. Interaction of IM30 with membranes results in an altered membrane structure and can finally trigger fusion of adjacent membranes, when Mg is present. Based on recent results, we finally present a model summarizing individual steps involved in IM30-mediated membrane fusion. This article is part of a Special Issue entitled: Lipid order/lipid defects and lipid-control of protein activity edited by Dirk Schneider.

摘要

光合作用的光反应发生在蓝细菌和叶绿体的类囊体膜系统内。除了其全球重要性外,该膜系统的生物发生、维持和动态仍然是一个谜。在过去的二十年中,有强有力的证据支持这样一种观点,即这些过程涉及到 IM30,即 30kDa 的内膜相关蛋白,这种蛋白也被称为质体中的囊泡诱导蛋白 1(Vipp1)。尽管我们才刚刚开始理解这种蛋白质的确切生理功能,但很明显,IM30 与膜的相互作用对于类囊体膜的生物发生至关重要。在这里,我们总结和讨论了指导 IM30-膜相互作用的力,因为膜的性质以及 IM30 的寡聚状态似乎会影响 IM30 与膜表面的适当相互作用。当存在 Mg 时,IM30 与膜的相互作用会导致膜结构发生改变,并最终引发相邻膜的融合。基于最近的结果,我们最终提出了一个模型,总结了 IM30 介介导膜融合涉及的各个步骤。本文是由 Dirk Schneider 编辑的题为“脂质有序/缺陷和脂质对蛋白质活性的控制”的特刊的一部分。

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