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VIPP1 在拟南芥叶绿体被膜维持中的必需作用。

Essential role of VIPP1 in chloroplast envelope maintenance in Arabidopsis.

机构信息

Institute of Plant Science and Resources, Okayama University, Kurashiki, Okayama 710-0046, Japan.

出版信息

Plant Cell. 2012 Sep;24(9):3695-707. doi: 10.1105/tpc.112.103606. Epub 2012 Sep 21.

Abstract

VESICLE-INDUCING PROTEIN IN PLASTIDS1 (VIPP1), proposed to play a role in thylakoid biogenesis, is conserved in photosynthetic organisms and is closely related to Phage Shock Protein A (PspA), which is involved in plasma membrane integrity in Escherichia coli. This study showed that chloroplasts/plastids in Arabidopsis thaliana vipp1 knockdown and knockout mutants exhibit a unique morphology, forming balloon-like structures. This altered morphology, as well as lethality of vipp1, was complemented by expression of VIPP1 fused to green fluorescent protein (VIPP1-GFP). Several lines of evidence show that the balloon chloroplasts result from chloroplast swelling related to osmotic stress, implicating VIPP1 in the maintenance of plastid envelopes. In support of this, Arabidopsis VIPP1 rescued defective proton leakage in an E. coli pspA mutant. Microscopy observation of VIPP1-GFP in transgenic Arabidopsis revealed that VIPP1 forms large macrostructures that are integrated into various morphologies along the envelopes. Furthermore, live imaging revealed that VIPP1-GFP is highly mobile when chloroplasts are subjected to osmotic stress. VIPP1-GFP showed dynamic movement in the transparent area of spherical chloroplasts, as the fluorescent molecules formed filament-like structures likely derived from disassembly of the large VIPP1 complex. Collectively, our data demonstrate that VIPP1 is a multifunctional protein in chloroplasts that is critically important for envelope maintenance.

摘要

质体膨压蛋白 1(VIPP1)被认为在类囊体生物发生中发挥作用,在光合生物中保守,与参与大肠杆菌质膜完整性的噬菌体休克蛋白 A(PspA)密切相关。本研究表明,拟南芥 vipp1 敲低和敲除突变体中的叶绿体/质体表现出独特的形态,形成气球样结构。这种改变的形态以及 vipp1 的致死性可以通过表达与绿色荧光蛋白融合的 VIPP1(VIPP1-GFP)来互补。有几条证据表明,气球状叶绿体是由于与渗透胁迫相关的叶绿体肿胀引起的,这表明 VIPP1 参与了质体膜的维持。支持这一观点的是,拟南芥 VIPP1 挽救了大肠杆菌 pspA 突变体中缺陷的质子渗漏。在转基因拟南芥中对 VIPP1-GFP 的显微镜观察表明,VIPP1 形成大的宏观结构,这些结构整合到沿膜的各种形态中。此外,活体成像显示,当叶绿体受到渗透胁迫时,VIPP1-GFP 具有很高的流动性。VIPP1-GFP 在球形叶绿体的透明区域显示出动态运动,因为荧光分子形成丝状结构,可能是由于大的 VIPP1 复合物的解体。总的来说,我们的数据表明,VIPP1 是叶绿体中的一种多功能蛋白,对维持膜的完整性至关重要。

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