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酵母细胞色素c中稳定和不稳定氨基酸替换的位点特异性组合:体内和体外效应

Site specific combinations of stabilizing and destabilizing amino acid replacements in yeast cytochrome c: in vivo and in vitro effects.

作者信息

Linske-O'Connell L I, Sherman F, McLendon G

机构信息

Department of Biochemistry, University of Rochester School of Medicine and Dentistry, New York 14642, USA.

出版信息

Biochemistry. 1995 May 30;34(21):7103-12. doi: 10.1021/bi00021a023.

Abstract

Oligonucleotide-directed mutagenesis in vivo was used to create destabilizing site specific changes at position 6 in iso-1-cytochrome c in Saccharomyces cerevisiae. These changes were made in combination with the stabilizing N52I substitution. The resulting proteins showed that a variety of forces and interactions are responsible for these destabilizations. Increasing side chain size was the strongest predictor of decreases in cytochrome c levels in vivo. With intermediate size replacements, increasing hydrophobicity correlated with the proteins' thermostability. Some differences in protein levels in vivo could not be explained by side chain size and hydrophobicity alone. Therefore, specific interactions of individual amino acids may also be involved. The N52I-stabilizing mutation tended to increase the protein levels to the same degree relative to the amino acid at position 6. These stabilized cytochromes had an increased specific activity when compared to the series with the original N52. Strains with these altered cytochromes c showed temperature sensitivities for protein levels and function. Thermodynamic measurements in vivo of the WT (C102A), N52I, G6A, G6A N52I, and G6S N52I correlated with the in vivo data. The variant G6A N52I showed additivity (Wells, 1990) of the Cm's and delta delta G's of unfolding for guanidine hydrochloride denaturation.

摘要

利用体内寡核苷酸定向诱变技术,在酿酒酵母的同工型1-细胞色素c的第6位引入位点特异性的不稳定变化。这些变化与稳定化的N52I替换相结合。所得蛋白质表明,多种作用力和相互作用导致了这些不稳定现象。侧链大小增加是体内细胞色素c水平降低的最强预测指标。对于中等大小的替换,疏水性增加与蛋白质的热稳定性相关。体内蛋白质水平的一些差异不能仅用侧链大小和疏水性来解释。因此,单个氨基酸的特异性相互作用也可能参与其中。N52I稳定突变倾向于使蛋白质水平相对于第6位的氨基酸增加相同程度。与具有原始N52的系列相比,这些稳定化的细胞色素具有更高的比活性。具有这些改变的细胞色素c的菌株在蛋白质水平和功能上表现出温度敏感性。对野生型(C102A)、N52I、G6A、G6A N52I和G6S N52I进行的体内热力学测量与体内数据相关。变体G6A N52I在盐酸胍变性的展开的Cm和ΔΔG方面表现出加和性(Wells,1990)。

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