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疏水作用对蛋白质/核酸相互作用的影响:核糖核酸酶T1中酪氨酸45突变为色氨酸增强底物结合作用

Hydrophobic effects on protein/nucleic acid interaction: enhancement of substrate binding by mutating tyrosine 45 to tryptophan in ribonuclease T1.

作者信息

Hakoshima T, Tanaka M, Itoh T, Tomita K I, Amisaki T, Nishikawa S, Morioka H, Uesugi S, Ohtsuka E, Ikehara M

机构信息

Faculty of Pharmaceutical Sciences, Osaka University, Japan.

出版信息

Protein Eng. 1991 Oct;4(7):793-9. doi: 10.1093/protein/4.7.793.

Abstract

Hydrophobic effects on binding of ribonuclease T1 to guanine bases of several ribonucleotides have been proved by mutating a hydrophobic residue at the recognition site and by measuring the effect on binding. Mutation of a hydrophobic surface residue to a more hydrophobic residue (Tyr45----Trp) enhances the binding to ribonucleotides, including mononucleotide inhibitor and product, and a synthetic substrate-analog trinucleotide as well as the binding to dinucleotide substrates and RNA. Enhancements on binding to non-substrate ribonucleotides by the mutation have been observed with free energy changes ranging from -2.2 to -3.9 kJ/mol. These changes are in good agreement with that of substrate binding, -2.3 kJ/mol, which is calculated from Michaelis constants obtained from kinetic studies. It is shown, by comparing the observed and calculated changes in binding free energy with differences in the observed transfer free energy changes of the amino acid side chains from organic solvents to water, that the enhancement observed on guanine binding comes from the difference in the hydrophobic effects of the side chains of tyrosine and tryptophan. Furthermore, a linear relationship between nucleolytic activities and hydrophobicity of the residues (Ala, Phe, Tyr, Trp) at position 45 is observed. The mutation could not change substantially the base specificity of RNase T1, which exhibits a prime requirement for guanine bases of substrates.

摘要

通过在识别位点突变一个疏水残基并测量其对结合的影响,已证明了疏水作用对核糖核酸酶T1与几种核糖核苷酸鸟嘌呤碱基结合的影响。将一个疏水表面残基突变为更疏水的残基(Tyr45→Trp)会增强与核糖核苷酸的结合,包括单核苷酸抑制剂和产物、合成底物类似物三核苷酸以及与二核苷酸底物和RNA的结合。通过该突变观察到与非底物核糖核苷酸结合的增强,自由能变化范围为-2.2至-3.9 kJ/mol。这些变化与底物结合的变化(-2.3 kJ/mol)非常吻合,该值是根据动力学研究获得的米氏常数计算得出的。通过比较观察到的和计算出的结合自由能变化与氨基酸侧链从有机溶剂到水的观察到的转移自由能变化的差异,表明观察到的鸟嘌呤结合增强来自酪氨酸和色氨酸侧链疏水作用的差异。此外,观察到45位残基(Ala、Phe、Tyr、Trp)的核酸裂解活性与疏水性之间存在线性关系。该突变不会实质性改变核糖核酸酶T1的碱基特异性,核糖核酸酶T1对底物的鸟嘌呤碱基有主要需求。

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