Prohl C, Pelzer W, Diekert K, Kmita H, Bedekovics T, Kispal G, Lill R
Institut für Zytobiologie und Zytopathologie der Philipps-Universität Marburg, 35033 Marburg, Germany.
Mol Cell Biol. 2001 Feb;21(4):1089-97. doi: 10.1128/MCB.21.4.1089-1097.2001.
The transport of metabolites, coenzymes, and ions across the mitochondrial inner membrane is still poorly understood. In most cases, membrane transport is facilitated by the so-called mitochondrial carrier proteins. The yeast Saccharomyces cerevisiae contains 35 members of the carrier family, but a function has been identified for only 13 proteins. Here, we investigated the yeast carrier Leu5p (encoded by the gene YHR002w) and its close human homologue Graves' disease protein. Leu5p is inserted into the mitochondrial inner membrane along the specialized import pathway used by carrier proteins. Deletion of LEU5 (strain Deltaleu5) was accompanied by a 15-fold reduction of mitochondrial coenzyme A (CoA) levels but did not affect the cytosolic CoA content. As a consequence, the activities of several mitochondrial CoA-dependent enzymes were strongly decreased in Deltaleu5 cells. Our in vitro and in vivo analyses assign a function to Leu5p in the accumulation of CoA in mitochondria, presumably by serving as a transporter of CoA or a precursor thereof. Expression of the Graves' disease protein in Deltaleu5 cells can replace the function of Leu5p, demonstrating that the human protein represents the orthologue of yeast Leu5p. The function of the human protein might not be directly linked to the disease, as antisera derived from patients with active Graves' disease do not recognize the protein after expression in yeast, suggesting that it does not represent a major autoantigen. The two carrier proteins characterized herein are the first components for which a role in the subcellular distribution of CoA has been identified.
代谢物、辅酶和离子在线粒体内膜上的转运仍未得到充分了解。在大多数情况下,膜转运由所谓的线粒体载体蛋白介导。酿酒酵母含有35个载体家族成员,但仅13种蛋白质的功能已被确定。在这里,我们研究了酵母载体Leu5p(由基因YHR002w编码)及其密切的人类同源物格雷夫斯病蛋白。Leu5p沿着载体蛋白使用的特殊导入途径插入线粒体内膜。LEU5缺失(菌株Deltaleu5)伴随着线粒体辅酶A(CoA)水平降低15倍,但不影响胞质CoA含量。因此,几种线粒体CoA依赖性酶的活性在Deltaleu5细胞中显著降低。我们的体外和体内分析确定Leu5p在线粒体中CoA积累中的作用,可能是作为CoA或其前体的转运体。格雷夫斯病蛋白在Deltaleu5细胞中的表达可以取代Leu5p的功能,表明人类蛋白代表酵母Leu5p的直系同源物。人类蛋白的功能可能与该疾病没有直接联系,因为来自活动性格雷夫斯病患者的抗血清在酵母中表达后不能识别该蛋白,这表明它不代表主要自身抗原。本文表征的两种载体蛋白是首批被确定在CoA亚细胞分布中起作用的成分。