Mutational effect of structural parameters on coiled-coil stability of proteins.

Proteomics insights Pub Date : 2013-02-13 eCollection Date: 2013-01-01 DOI:10.4137/PRI.S10988
Amutha Selvaraj Maheshwari, Govindaraju Archunan
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Abstract

Understanding the parameters that influence the melting temperature of coiled-coils (CC) and their stability is very important. We have analyzed 45 CC mutants of DNA binding protein, electron transport protein, hydrolase, oxidoreductase, and transcription factors. Many mutants have been observed at Tm = 40 °C-60 °C with ΔS = 9-11 kcal/°C mol, ΔG = -400 to -450 kcal/mol, and Keq = 0.98-1.03. The multiple regression analysis of Tm reveals that influences of thermodynamic parameters are strong (R = 0.97); chemical parameters are moderate (R = 0.63); and the geometrical parameters are negligible (R = 0.19). The combination of all these three parameters exhibits a little higher influence on Tm (R = 0.98). From the analysis, it has been concluded that the thermodynamic parameters alone are very important in stability studies on protein coil mutants. Besides, the derived regression model would have been useful for the reliable prediction of the melting temperature of coil mutants.

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结构参数对蛋白质盘绕稳定性的突变效应。
了解影响盘管熔化温度及其稳定性的参数是非常重要的。我们分析了45个DNA结合蛋白、电子传递蛋白、水解酶、氧化还原酶和转录因子的CC突变体。在Tm = 40°C-60°C, ΔS = 9-11 kcal/°C mol, ΔG = -400 ~ -450 kcal/mol, Keq = 0.98-1.03时观察到许多突变体。对Tm的多元回归分析表明,热力学参数对Tm的影响较大(R = 0.97);化学参数适中(R = 0.63);几何参数可以忽略不计(R = 0.19)。这三个参数的组合对Tm的影响略高(R = 0.98)。分析表明,热力学参数在蛋白质线圈突变体的稳定性研究中是非常重要的。此外,所建立的回归模型可用于可靠地预测线圈突变体的熔化温度。
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