Hashimoto M, Shinohara Y, Majima E, Hatanaka T, Yamazaki N, Terada H
Faculty of Pharmaceutical Sciences, University of Tokushima, Shomachi-1, Tokushima 770-8505, Japan.
Biochim Biophys Acta. 1999 Jan 5;1409(3):113-24. doi: 10.1016/s0005-2728(98)00155-8.
To characterize the transport mechanism mediated by the mammalian mitochondrial ADP/ATP carrier (AAC), we tried to express bovine heart mitochondrial AAC (bhAAC) in Saccharomyces cerevisiae. The open reading frame of the bhAAC was introduced into the haploid strain WB-12, in which intrinsic AAC genes were disrupted. Growth of the transformant was very low in glycerol medium, and a little amount of bhAAC was detected in the mitochondrial membrane. For improvement of bhAAC expression in WB-12, we introduced DNA fragments encoding chimeric bhAACs, in which the N-terminal region of the bhAAC extending into the cytosol was replaced by the corresponding regions of the type 1 and type 2 yeast AAC isoforms (yAAC1 and yAAC2). These transformants grew well, and the amounts of the chimeric bhAACs in their mitochondria were as high as that of yAAC2. The carriers expressed showed essentially the same ADP transport activities as that of AAC in bovine heart mitochondria.
为了表征哺乳动物线粒体 ADP/ATP 载体(AAC)介导的转运机制,我们试图在酿酒酵母中表达牛心线粒体 AAC(bhAAC)。将 bhAAC 的开放阅读框导入单倍体菌株 WB-12 中,该菌株中内在的 AAC 基因已被破坏。在甘油培养基中,转化体的生长非常缓慢,并且在线粒体膜中检测到少量的 bhAAC。为了提高 bhAAC 在 WB-12 中的表达,我们引入了编码嵌合 bhAAC 的 DNA 片段,其中延伸到细胞质中的 bhAAC 的 N 端区域被 1 型和 2 型酵母 AAC 同工型(yAAC1 和 yAAC2)的相应区域所取代。这些转化体生长良好,并且它们线粒体中嵌合 bhAAC 的量与 yAAC2 的量一样高。所表达的载体显示出与牛心线粒体中的 AAC 基本相同的 ADP 转运活性。