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Lpe10p 调节基于 Mrs2p 的酵母线粒体 Mg2+通道的活性。

Lpe10p modulates the activity of the Mrs2p-based yeast mitochondrial Mg2+ channel.

机构信息

Max F. Perutz Laboratories, Department of Microbiology, Immunology and Genetics, Vienna, Austria.

出版信息

FEBS J. 2010 Sep;277(17):3514-25. doi: 10.1111/j.1742-4658.2010.07761.x. Epub 2010 Jul 23.

Abstract

Saccharomyces cerevisiae Lpe10p is a homologue of the Mg(2+)-channel-forming protein Mrs2p in the inner mitochondrial membrane. Deletion of MRS2, LPE10 or both results in a petite phenotype, which exhibits a respiratory growth defect on nonfermentable carbon sources. Only coexpression of MRS2 and LPE10 leads to full complementation of the mrs2Delta/lpe10Delta double disruption, indicating that these two proteins cannot substitute for each other. Here, we show that deletion of LPE10 results in a loss of rapid Mg(2+) influx into mitochondria, as has been reported for MRS2 deletion. Additionally, we found a considerable loss of the mitochondrial membrane potential (DeltaPsi) in the absence of Lpe10p, which was not detected in mrs2Delta cells. Addition of the K(+)/H(+)-exchanger nigericin, which artificially increases DeltaPsi, led to restoration of Mg(2+) influx into mitochondria in lpe10Delta cells, but not in mrs2Delta/lpe10Delta cells. Mutational analysis of Lpe10p and domain swaps between Mrs2p and Lpe10p suggested that the maintenance of DeltaPsi and that of Mg(2+) influx are functionally separated. Cross-linking and Blue native PAGE experiments indicated interaction of Lpe10p with the Mrs2p-containing channel complex. Using the patch clamp technique, we showed that Lpe10p was not able to mediate high-capacity Mg(2+) influx into mitochondrial inner membrane vesicles without the presence of Mrs2p. Instead, coexpression of Lpe10p and Mrs2p yielded a unique, reduced conductance in comparison to that of Mrs2p channels. In summary, the data presented show that the interplay of Lpe10p and Mrs2p is of central significance for the transport of Mg(2+) into mitochondria of S. cerevisiae.

摘要

酿酒酵母 Lpe10p 是线粒体内膜中 Mg(2+)-通道形成蛋白 Mrs2p 的同源物。MRS2、LPE10 或两者的缺失都会导致 petite 表型,在非发酵碳源上表现出呼吸生长缺陷。只有 MRS2 和 LPE10 的共表达才能完全互补 mrs2Delta/lpe10Delta 双缺失,表明这两种蛋白不能相互替代。在这里,我们发现 Lpe10 的缺失导致快速 Mg(2+)流入线粒体的丧失,正如 MRS2 缺失所报道的那样。此外,我们发现 Lpe10p 缺失会导致线粒体膜电位 (DeltaPsi) 显著丧失,而在 mrs2Delta 细胞中未检测到。添加 K(+)/H(+)-交换体 Nigericin,人为增加 DeltaPsi,导致 lpe10Delta 细胞中 Mg(2+)流入线粒体的恢复,但在 mrs2Delta/lpe10Delta 细胞中没有恢复。Lpe10p 的突变分析和 Mrs2p 与 Lpe10p 之间的结构域交换表明,DeltaPsi 的维持和 Mg(2+)流入的维持是功能分离的。交联和 Blue native PAGE 实验表明 Lpe10p 与含有 Mrs2p 的通道复合物相互作用。使用膜片钳技术,我们表明在没有 Mrs2p 的情况下,Lpe10p 不能介导 Mg(2+)进入线粒体内膜囊泡的高容量流入。相反,Lpe10p 和 Mrs2p 的共表达产生了一种独特的、与 Mrs2p 通道相比降低的电导。总之,所呈现的数据表明,Lpe10p 和 Mrs2p 的相互作用对于酿酒酵母线粒体中 Mg(2+)的转运具有核心意义。

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