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酵母中延胡索酸酶的线粒体导入、折叠及逆向运输

Import into mitochondria, folding and retrograde movement of fumarase in yeast.

作者信息

Knox C, Sass E, Neupert W, Pines O

机构信息

Department of Molecular Biology, Hebrew University Medical School, Jerusalem 91120, Israel.

出版信息

J Biol Chem. 1998 Oct 2;273(40):25587-93. doi: 10.1074/jbc.273.40.25587.

Abstract

A single translation product of the FUM1 gene encoding fumarase is distributed between the cytosol and mitochondria of Saccharomyces cerevisiae. All fumarase translation products are targeted and processed in mitochondria before distribution. Here we show that targeting of fumarase is coupled to translation and initially involves insertion of the protein across the mitochondrial membranes and processing by the matrix protease. Rapid folding of fumarase may determine its requirement for coupling of its translocation with translation and unique route of distribution. The amino termini of most fumarase molecules are translocated across the mitochondrial membranes and processed. Unlike the in vivo situation where these molecules are released into the cytosol, in vitro they remain externally attached to the mitochondria, thereby positioned for release from the organelle. Our model suggests that fumarase displays a unique mechanism of targeting and distribution, which occurs cotranslationally and involves folding and retrograde movement of the processed protein back through the translocation pore.

摘要

编码延胡索酸酶的FUM1基因的单一翻译产物分布在酿酒酵母的细胞质和线粒体之间。所有延胡索酸酶翻译产物在分布之前都先定位于线粒体并在其中进行加工。在这里,我们表明延胡索酸酶的定位与翻译相偶联,最初涉及蛋白质穿过线粒体膜的插入以及基质蛋白酶的加工。延胡索酸酶的快速折叠可能决定了其转运与翻译偶联的需求以及独特的分布途径。大多数延胡索酸酶分子的氨基末端穿过线粒体膜并被加工。与这些分子在体内释放到细胞质中的情况不同,在体外它们仍然附着在线粒体外部,从而定位以便从细胞器中释放。我们的模型表明,延胡索酸酶显示出一种独特的靶向和分布机制,这种机制在共翻译过程中发生,涉及加工后的蛋白质通过转运孔的折叠和逆行移动。

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