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首页> 外文期刊>Biochimica et biophysica acta. Bioenergetics >Identification of mitochondrial carriers in Saccharomyces cerevisiae by transport assay of reconstituted recombinant proteins
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Identification of mitochondrial carriers in Saccharomyces cerevisiae by transport assay of reconstituted recombinant proteins

机译:通过重组重组蛋白的转运分析鉴定酿酒酵母中的线粒体载体

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摘要

The inner membranes of mitochondria contain a family of carrier proteins that are responsible for the transport in and out of the mitochondrial matrix of substrates, products, co-factors and biosynthetic precursors that are essential for the function and activities of the organelle. This family of proteins is characterized by containing three tandem homologous sequence repeats of approximately 100 amino acids, each folded into two transmembrane a-helices linked by an extensive polar loop. Each repeat contains a characteristic conserved sequence. These features have been used to determine the extent of the family in genome sequences. The genome of Saccharomyces cerevisiae contains 34 members of the family. The identity of five of them was known before the determination of the genome sequence, but the functions of the remaining family members were not. This review describes how the functions of 15 of these previously unknown transport proteins have been determined by a strategy that consists of expressing the genes in Escherichia coli or Saccharomyces cerevisiae, reconstituting the gene products into liposomes and establishing their functions by transport assay. Genetic and biochemical evidence as well as phylogenetic considerations have guided the choice of substrates that were tested in the transport assays. The physiological roles of these carriers have been verified by genetic experiments. Various pieces of evidence point to the functions of six additional members of the family, but these proposals await confirmation by transport assay. The sequences of many of the newly identified yeast carriers have been used to characterize orthologs in other species, and in man five diseases are presently known to be caused by defects in specific mitochondrial carrier genes. The roles of eight yeast mitochondrial carriers remain to be established. (c) 2006 Elsevier B.V. All rights reserved.
机译:线粒体的内膜包含一类载体蛋白,这些蛋白负责运输和运输底物,产物,辅因子和生物合成前体的线粒体基质,这些底物对细胞器的功能和活性至关重要。该蛋白家族的特征在于包含三个约100个氨基酸的串联同源重复序列,每个重复序列折叠成两个由宽极性环连接的跨膜a螺旋。每个重复包含一个特征性的保守序列。这些特征已被用于确定家族在基因组序列中的程度。酿酒酵母的基因组包含该家族的34个成员。在确定基因组序列之前,已经知道其中五个的身份,但是其余家族成员的功能却未知。这篇综述描述了如何通过一种策略确定这些先前未知的转运蛋白中的15种的功能,该策略包括在大肠杆菌或酿酒酵母中表达基因,将基因产物重组为脂质体并通过转运测定法确定其功能。遗传和生物化学证据以及系统发育考虑因素指导了在运输分析中测试的底物的选择。这些携带者的生理作用已经通过基因实验证实。各种各样的证据指向该家庭另外六个成员的功能,但是这些提议有待转运分析的证实。许多新近鉴定的酵母载体的序列已用于表征其他物种的直向同源物,目前已知在人类中有五种疾病是由特定线粒体载体基因的缺陷引起的。八个酵母线粒体载体的作用尚待确定。 (c)2006 Elsevier B.V.保留所有权利。

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