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囊泡诱导蛋白在类囊体膜 cpTat 转运中的作用 1。

Role of vesicle-inducing protein in plastids 1 in cpTat transport at the thylakoid.

机构信息

Section of Plant Biology, University of California at Davis, Davis, CA 95616, USA.

出版信息

Plant J. 2012 Aug;71(4):656-68. doi: 10.1111/j.1365-313X.2012.05020.x. Epub 2012 Jun 18.

Abstract

VIPP1 has been shown to be required for the proper formation of thylakoid membranes. However, studies on VIPP1 itself, as well as on PspA, its bacterial homolog, suggests that this protein may be involved in a number of additional functions, including protein translocation. The role of VIPP1 in protein translocation in the chloroplast has not been investigated. To this end, we conducted in vitro thylakoid protein transport assays to look at the effect of VIPP1 on the cpTat pathway, which is one of three translocation pathways found in both the chloroplast and its bacterial progenitor. We found that VIPP1 does indeed enhance protein transport through the cpTat pathway by up to 100%. The VIPP1 effect on cpTat activity occurs without interacting with the substrates or components of the translocon, and does not alter the energy potentials driving this translocation pathway. Instead, VIPP1 greatly enhances the amount of substrate bound productively to the thylakoids. Moreover, the presence of increasing VIPP1 concentrations in the reactions resulted in greater interactions between thylakoid membranes. Taken together, these results demonstrate a stimulatory role for VIPP1 in cpTat transport by enhancement of substrate binding, probably to the membrane lipid regions of the thylakoid. We propose a model in which VIPP1 facilitates reorganization of the thylakoid structure to increase substrate access to productive binding regions of the membrane as an early step in the cpTat pathway.

摘要

VIPP1 已被证明是类囊体膜正常形成所必需的。然而,对 VIPP1 本身及其细菌同源物 PspA 的研究表明,该蛋白可能参与许多其他功能,包括蛋白质易位。VIPP1 在叶绿体中蛋白质易位的作用尚未得到研究。为此,我们进行了体外类囊体蛋白转运测定,以研究 VIPP1 对 cpTat 途径的影响,cpTat 途径是存在于叶绿体及其细菌前体中的三种转运途径之一。我们发现 VIPP1 确实通过将 cpTat 途径的蛋白转运提高了 100%。VIPP1 对 cpTat 活性的影响发生在不与易位体的底物或成分相互作用的情况下,并且不改变驱动这种易位途径的能量潜力。相反,VIPP1 极大地增加了与类囊体结合的底物的数量。此外,反应中 VIPP1 浓度的增加导致类囊体膜之间的相互作用增加。总之,这些结果表明 VIPP1 通过增强底物结合来刺激 cpTat 转运,可能是通过与类囊体膜的脂质区域结合。我们提出了一个模型,其中 VIPP1 通过促进类囊体结构的重组来增加底物与膜的有效结合区域的接触,作为 cpTat 途径的早期步骤。

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