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嗜热蛋白Ssh10b中的盐桥对温度升高具有耐受性。

Salt bridges in the hyperthermophilic protein Ssh10b are resilient to temperature increases.

作者信息

Ge Meng, Xia Xia-Yu, Pan Xian-Ming

机构信息

Key Laboratory of Bioinformatics, Ministry of Education, Department of Biological Sciences and Biotechnology, Tsinghua University, Beijing 100084, China.

出版信息

J Biol Chem. 2008 Nov 14;283(46):31690-6. doi: 10.1074/jbc.M805750200. Epub 2008 Sep 8.

Abstract

A double mutant cycle (DMC) approach was employed to estimate the effect of temperature on the contribution of two highly conserved salt bridges to protein stability in the hyperthermophilic protein Ssh10b. The coupling free energy were 2.4 +/- 0.4 kJ/mol at 298 K and 2.2 +/- 0.4 kJ/mol at 353 K for Glu-54/Arg-57, and 6.0 +/- 0.2 kJ/mol at 298 K and 5.9 +/- 0.6 kJ/mol at 353 K for Glu-36/Lys-68. The stability free energy of Ssh10b decrease greatly with increasing temperature, while the direct contribution of these two salt bridges to protein stability remain almost constant, providing evidence supporting the theoretical prediction that salt bridges are extremely resilient to temperature increases and thus are specially suited to improving protein stability at high temperatures. The reason for the difference in coupling free energy between salt bridges Glu-54/Arg-57 and Glu-36/Lys-68 is discussed. Comparing our results with published DMC data for the contribution of salt bridges to stability in other proteins, we found that the energy contribution of a salt bridge formed by two charged residues far apart in the primary sequence is higher than that of those formed between two very close ones. Implications of this finding are useful for engineering proteins with enhanced thermostability.

摘要

采用双突变循环(DMC)方法来评估温度对两个高度保守的盐桥对嗜热蛋白Ssh10b蛋白质稳定性贡献的影响。对于Glu-54/Arg-57,在298 K时耦合自由能为2.4±0.4 kJ/mol,在353 K时为2.2±0.4 kJ/mol;对于Glu-36/Lys-68,在298 K时为6.0±0.2 kJ/mol,在353 K时为5.9±0.6 kJ/mol。Ssh10b的稳定性自由能随温度升高而大幅降低,而这两个盐桥对蛋白质稳定性的直接贡献几乎保持不变,这为盐桥对温度升高具有极强弹性因而特别适合提高高温下蛋白质稳定性这一理论预测提供了证据。讨论了盐桥Glu-54/Arg-57和Glu-36/Lys-68之间耦合自由能差异的原因。将我们的结果与已发表的关于盐桥对其他蛋白质稳定性贡献的DMC数据进行比较,我们发现由一级序列中相距较远的两个带电残基形成的盐桥的能量贡献高于两个非常接近的残基之间形成的盐桥。这一发现对于设计具有更高热稳定性的蛋白质具有重要意义。

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