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OEP37是叶绿体外膜离子通道的一个新成员。

OEP37 is a new member of the chloroplast outer membrane ion channels.

作者信息

Goetze Tom Alexander, Philippar Katrin, Ilkavets Irina, Soll Jürgen, Wagner Richard

机构信息

Biophysik, Universität Osnabrück, FB Biologie/Chemie, Barbarastrasse 13, D-49076 Osnabrück, Germany.

出版信息

J Biol Chem. 2006 Jun 30;281(26):17989-98. doi: 10.1074/jbc.M600700200. Epub 2006 Apr 19.

Abstract

The chloroplast outer envelope protein OEP37 is a member of the growing beta-barrel protein family of the outer chloroplast membrane. The reconstituted recombinant protein OEP37 from pea forms a rectifying high conductance channel with a main conductance (lambda) of Lambda= 500 picosiemens (symmetrical 250 mm KCl). The OEP37 channel is cation-selective (P(K+)/P(K-) = 14:1) with a voltage-dependent open probability maximal at V(mem) = 0 mV. The channel pore reveals an hourglass-shaped form with different diameters for the vestibule and restriction zone. The diameters of the vestibule at the high conductance side were estimated by d = 3.0 nm and the restriction zone by d = 1.5 nm. The OEP37 channel displayed a nanomolar affinity for the precursor of the chloroplast inner membrane protein Tic32, which is imported into the chloroplast through a yet unknown pathway. Pre-proteins imported through the usual Toc pathway and synthetic control peptides, however, did not show a comparable block of the OEP37 channel. In addition to the electrophysiological characterization, we studied the gene expression of OEP37 in the model plant Arabidopsis thaliana. Here, transcripts of AtOEP37 are ubiquitously expressed throughout plant development and accumulate in early germinating seedlings as well as in late embryogenesis. The plastid intrinsic protein could be detected in isolated chloroplasts of cotyledons and rosette leaves. However, the knock-out mutant oep37-1 shows that the proper function of this single copy gene is not essential for development of the mature plant. Moreover, import of Tic32 into chloroplasts of oep37-1 was not impaired when compared with wild type. Thus, OEP37 may constitute a novel peptide-sensitive ion channel in the outer envelope of plastids with function during embryogenesis and germination.

摘要

叶绿体外膜蛋白OEP37是叶绿体外膜中不断增加的β-桶状蛋白家族的成员。从豌豆中重组的重组蛋白OEP37形成了一个整流高电导通道,其主要电导(λ)为λ = 500皮西门子(对称250 mM KCl)。OEP37通道具有阳离子选择性(P(K+)/P(Cl-) = 14:1),电压依赖性开放概率在V(mem) = 0 mV时最大。通道孔呈现出沙漏形,前庭和限制区的直径不同。高电导侧前庭的直径估计为d = 3.0 nm,限制区的直径为d = 1.5 nm。OEP37通道对叶绿体内膜蛋白Tic32的前体具有纳摩尔亲和力,Tic32通过一条未知途径导入叶绿体。然而,通过常规Toc途径导入的前体蛋白和合成对照肽并未显示出对OEP37通道的类似阻断作用。除了电生理特性表征外,我们还研究了模式植物拟南芥中OEP37的基因表达。在这里,AtOEP37的转录本在植物发育过程中普遍表达,并在早期萌发的幼苗以及胚胎后期积累。在子叶和莲座叶的分离叶绿体中可以检测到质体内在蛋白。然而,敲除突变体oep37-1表明,这个单拷贝基因的正常功能对于成熟植物的发育并非必不可少。此外,与野生型相比,oep37-1叶绿体中Tic32的导入并未受损。因此,OEP37可能构成质体外膜中一种新型的肽敏感离子通道,在胚胎发生和萌发过程中发挥作用。

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