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疏水相互作用对蛋白质稳定性的贡献。

Contribution of hydrophobic interactions to protein stability.

作者信息

Kellis J T, Nyberg K, Sali D, Fersht A R

机构信息

Department of Chemistry, Imperial College of Science and Technology, London, UK.

出版信息

Nature. 1988 Jun 23;333(6175):784-6. doi: 10.1038/333784a0.

Abstract

A major factor in the folding of proteins is the burying of hydrophobic side chains. A specific example is the packing of alpha-helices on beta-sheets by interdigitation of nonpolar side chains. The contributions of these interactions to the energetics of protein stability may be measured by simple protein engineering experiments. We have used site-directed mutagenesis to truncate hydrophobic side chains at an alpha-helix/beta-sheet interface in the small ribonuclease from Bacillus amyloliquefaciens (barnase). The decreases in stability of the mutant proteins were measured by their susceptibility to urea denaturation. Creation of a cavity the size of a -CH2-group destabilizes the enzyme by 1.1 kcal mol-1, and a cavity the size of three such groups by 4.0 kcal mol-1.

摘要

蛋白质折叠的一个主要因素是疏水侧链的埋藏。一个具体例子是α-螺旋通过非极性侧链的相互交错堆积在β-折叠片上。这些相互作用对蛋白质稳定性能量学的贡献可以通过简单的蛋白质工程实验来测量。我们利用定点诱变在解淀粉芽孢杆菌(芽孢杆菌核酸酶)的小核糖核酸酶的α-螺旋/β-折叠片界面处截短疏水侧链。通过突变蛋白对尿素变性的敏感性来测量其稳定性的降低。形成一个-CH₂基团大小的空腔会使酶的稳定性降低1.1千卡/摩尔,而形成三个这样基团大小的空腔会使其稳定性降低4.0千卡/摩尔。

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