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野生型和无半胱氨酸酵母线粒体柠檬酸转运蛋白的寡聚状态。

Oligomeric state of wild-type and cysteine-less yeast mitochondrial citrate transport proteins.

作者信息

Kotaria R, Mayor J A, Walters D E, Kaplan R S

机构信息

Department of Biochemistry and Molecular Biology, FUHS/Chicago Medical School, Illinois 60064, USA.

出版信息

J Bioenerg Biomembr. 1999 Dec;31(6):543-9. doi: 10.1023/a:1005460810527.

Abstract

Experiments have been conducted to determine the oligomeric state of the mitochondrial citrate transport protein (CTP) from the yeast Saccharomyces cerevisiae. Both wild-type and cysteine-less (Cys-less) CTPs were overexpressed in E. coli and solubilized with sarkosyl. The purity of the solubilized material is approximately 75%. Upon incorporation into phospholipid vesicles, a high specific transport activity is obtained with both the wild-type and Cys-less CTPs, thereby demonstrating the structural and functional integrity of the preparations. Two independent approaches were utilized to determine native molecular weight. First, CTP molecular weight was determined via nondenaturing size-exclusion chromatography. With this methodology we obtained molecular weight values of 70,961 and 70,118 for the wild-type and Cys-less CTPs, respectively. Second, charge-shift native gel electrophoresis was carried out utilizing a low concentration of the negatively charged detergent sarkosyl, which served to both impart a charge shift to the CTP and the protein standards, as well as to promote protein solubility. Via the second method, we obtained molecular weight values of 69,122 and 74,911 for the wild-type and Cys-less CTPs, respectively. Both methods clearly indicate that following solubilization, the wild-type and the Cys-less CTPs exist exclusively as dimers. Furthermore, disulfide bonds are not required for either dimer formation or stabilization. The dimeric state of the CTP has important implications for the structural basis underlying the CTP translocation mechanism.

摘要

已开展实验以确定来自酿酒酵母的线粒体柠檬酸转运蛋白(CTP)的寡聚状态。野生型和无半胱氨酸(Cys-less)的CTP均在大肠杆菌中过表达,并用 Sarkosyl 溶解。溶解后的材料纯度约为75%。将其整合到磷脂囊泡中后,野生型和无半胱氨酸的CTP均获得了高特异性转运活性,从而证明了制剂的结构和功能完整性。采用了两种独立的方法来确定天然分子量。首先,通过非变性尺寸排阻色谱法测定CTP分子量。用这种方法,我们分别获得了野生型和无半胱氨酸CTP的分子量值为70,961和70,118。其次,利用低浓度带负电荷的去污剂Sarkosyl进行电荷转移天然凝胶电泳,它既用于使CTP和蛋白质标准品产生电荷转移,也用于促进蛋白质溶解。通过第二种方法,我们分别获得了野生型和无半胱氨酸CTP的分子量值为69,122和74,911。两种方法都清楚地表明,溶解后,野生型和无半胱氨酸的CTP仅以二聚体形式存在。此外,二硫键对于二聚体的形成或稳定都不是必需的。CTP的二聚体状态对CTP转运机制的结构基础具有重要意义。

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