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核编码的叶绿体膜蛋白向被膜和类囊体膜的分选。

Sorting of nuclear-encoded chloroplast membrane proteins to the envelope and the thylakoid membrane.

作者信息

Brink S, Fischer K, Klösgen R B, Flügge U I

机构信息

Botanisches Institut der Universität zu Köln, Germany.

出版信息

J Biol Chem. 1995 Sep 1;270(35):20808-15. doi: 10.1074/jbc.270.35.20808.

Abstract

The spinach triose phosphate/phosphate translocator and the 37-kDa protein are both integral components of the chloroplast inner envelope membrane. They are synthesized in the cytosol with N-terminal extensions, the transit peptides, that are different in structural terms from those of imported stromal or thylakoid proteins. In order to determine if these N-terminal extensions are essential for the correct localization to the envelope membrane, they were linked to the mature parts of thylakoid membrane proteins, the light-harvesting chlorophyll a/b binding protein and the CF0II-subunit of the thylakoid ATP synthase, respectively. In addition, the transit peptide of the CF0II-subunit that contains signals for the transport across both the envelope and the thylakoid membrane was fused to the mature parts of both envelope membrane proteins. The chimeric proteins were imported into isolated spinach chloroplasts, and the intraorganellar routing of the proteins was analyzed. The results obtained show that the N-terminal extensions of both envelope membrane proteins possess a stroma-targeting function only and that the information for the integration into the envelope membrane is contained in the mature parts of the proteins. At least part of the integration signal is provided by hydrophobic domains in the mature sequences since the removal of such a hydrophobic segment from the 37-kDa protein leads to missorting of the protein to the stroma and the thylakoid membrane.

摘要

菠菜磷酸丙糖/磷酸转运体和37 kDa蛋白都是叶绿体内膜的组成成分。它们在细胞质中合成,带有N端延伸序列,即转运肽,其结构与导入基质或类囊体的蛋白质不同。为了确定这些N端延伸序列对于正确定位到内膜是否必不可少,分别将它们与类囊体膜蛋白的成熟部分,即捕光叶绿素a/b结合蛋白和类囊体ATP合酶的CF0II亚基相连。此外,将含有跨内膜和类囊体膜转运信号的CF0II亚基的转运肽与两种内膜蛋白的成熟部分融合。将嵌合蛋白导入分离的菠菜叶绿体中,并分析蛋白质在细胞器内的转运途径。所得结果表明,两种内膜蛋白的N端延伸序列仅具有靶向基质的功能,而整合到内膜中的信息则包含在蛋白质的成熟部分。至少部分整合信号由成熟序列中的疏水域提供,因为从37 kDa蛋白中去除这样一个疏水片段会导致该蛋白错误分选至基质和类囊体膜。

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