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蛋白质导入植物线粒体:前体蛋白在ATP和膜电位需求方面存在差异。

Protein import into plant mitochondria: precursor proteins differ in ATP and membrane potential requirements.

作者信息

Tanudji M, Dessi P, Murcha M, Whelan J

机构信息

Department of Biochemistry, University of Western Australia, Nedlands, Australia.

出版信息

Plant Mol Biol. 2001 Feb;45(3):317-25. doi: 10.1023/a:1006456115140.

Abstract

The import pathways of the alternative oxidase and the F(A)d subunit of the ATP synthase from soybean were characterised. The F(A)d precursor does not require extramitochondrial ATP for import and this was shown to be a characteristic of the mature protein. The alternative oxidase and F(A)d precursors were shown to differ in their requirement for a membrane potential. The membrane potential was modified using malonate, a competitive inhibitor to complex II. The alternative oxidase could be imported at higher malonate concentrations compared to the F(A)d. This difference could not be ascribed to the number of positive charges in each presequence as would be predicted from similar studies in fungi.

摘要

对来自大豆的交替氧化酶和ATP合酶的F(A)d亚基的导入途径进行了表征。F(A)d前体导入不需要线粒体外ATP,这表明这是成熟蛋白的一个特征。交替氧化酶和F(A)d前体在对膜电位的需求上有所不同。使用丙二酸(一种复合物II的竞争性抑制剂)来改变膜电位。与F(A)d相比,在较高丙二酸浓度下交替氧化酶仍可导入。这种差异不能像在真菌中类似研究所预测的那样归因于每个前导序列中的正电荷数量。

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