Pearce D A, Sherman F
Department of Biochemistry, University of Rochester, School of Medicine and Dentistry, New York 14642-8607, USA.
Mol Gen Genet. 1995 Nov 15;249(2):155-61. doi: 10.1007/BF00290361.
Previous work has established that the N57I amino acid replacement in iso-1-cytochrome c from the yeast Saccharomyces cerevisiae causes an unprecedented increase in thermodynamic stability of the protein in vitro, whereas the N57G replacement diminishes stability. Spectrophotometric measurements of intact cells revealed that the N57I iso-1-cytochrome c is present at higher than normal levels in vivo. Although iso-1-cytochrome c turnover is negligible during aerobic growth, transfer of fully derepressed, aerobically grown cells to anaerobic growth conditions leads to reduction in the levels of all of the cytochromes. Pulse-chase experiments carried out under these anaerobic conditions demonstrated that the N57I iso-1-cytochrome c has a longer half-life than the normal protein. This is the first report of enhanced stability in vivo of a mutant form of a protein that has an enhanced thermodynamic stability in vitro. Although the N57I protein concentration is higher than the normal level, reduced growth in lactate medium indicated that the specific activity of this iso-1-cytochrome c in vivo is diminished relative to wild-type. On the other hand, the level of the thermodynamically labile N57G iso-1-cytochrome c was below normal. The in vivo levels of the N57I and N57G iso-1-cytochrome c suggest that proteins in the mitochondrial intermembrane space can be subjected to degradation, and that this degradation may play a role in controlling their normal levels.
先前的研究已经证实,酿酒酵母中异-1-细胞色素c的N57I氨基酸替换导致该蛋白在体外的热力学稳定性出现前所未有的增加,而N57G替换则降低了稳定性。对完整细胞的分光光度测量表明,N57I异-1-细胞色素c在体内的水平高于正常水平。虽然在有氧生长过程中异-1-细胞色素c的周转可以忽略不计,但将完全去阻遏的、有氧生长的细胞转移到厌氧生长条件下会导致所有细胞色素水平的降低。在这些厌氧条件下进行的脉冲追踪实验表明,N57I异-1-细胞色素c的半衰期比正常蛋白更长。这是关于一种在体外具有增强的热力学稳定性的蛋白质突变体在体内稳定性增强的首次报道。虽然N57I蛋白浓度高于正常水平,但在乳酸培养基中生长减缓表明该异-1-细胞色素c在体内的比活性相对于野生型有所降低。另一方面,热力学不稳定的N57G异-1-细胞色素c的水平低于正常水平。N57I和N57G异-1-细胞色素c的体内水平表明,线粒体外膜间隙中的蛋白质可能会被降解,并且这种降解可能在控制它们的正常水平中发挥作用。