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精浆核糖核酸酶31和32位半胱氨酸残基超反应性的分子基础。

Molecular basis of superreactivity of cysteine residues 31 and 32 of seminal ribonuclease.

作者信息

Parente A, Merrifield B, Geraci G, D'Alessio G

出版信息

Biochemistry. 1985 Feb 26;24(5):1098-104. doi: 10.1021/bi00326a005.

Abstract

The molecular basis of the high reactivity toward reducing agents of intersubunit disulfides at positions 31 and 32 of dimeric bovine seminal ribonuclease was investigated by studying in the monomeric enzyme the fast reaction kinetics with disulfides of the adjacent cysteine-31 and -32, exposed by selective reduction of the intersubunit disulfides. Negatively charged and neutral disulfide reagents were used for measuring the thiol reaction rates at neutral pH. The kinetics studied as a function of pH permitted us to define pK values for the thiols of interest and indicated the possibility of determining pK values of SH groups in proteins indirectly by measuring the kinetics of reactivity of the SH groups with a disulfide reagent. The results were compared with those obtained under identical conditions with synthetic thiol peptides and model compounds. The data indicate that the superreactivity of intersubunit disulfides of seminal ribonuclease is matched by the high reactivity at neutral pH of adjacent cysteine residues 31 and 32, as compared to all small thiol compounds tested. The synthetic hexapeptide segment of seminal ribonuclease Ac-Met-Cys-Cys-Arg-Lys-Met-OH, which includes the two cysteine residues of interest, was even more reactive. These data, and the other results reported in this paper, led to the conclusion that the superreactivity at neutral pH of cysteine residues at positions 31 and 32 of bovine seminal ribonuclease is primarily dependent on the nearby presence of positively charged groups, particularly the epsilon-NH2 of lysine-34, and is influenced by the adjacency of the two thiols and by the protein tertiary structure.

摘要

通过研究单体酶中与相邻半胱氨酸-31和-32的二硫键的快速反应动力学,来探究二聚体牛精核糖核酸酶31和32位亚基间二硫键对还原剂高反应性的分子基础。这两个相邻半胱氨酸-31和-32的二硫键是通过亚基间二硫键的选择性还原而暴露的。使用带负电荷和中性的二硫试剂来测量中性pH下的硫醇反应速率。研究作为pH函数的动力学使我们能够确定感兴趣硫醇的pK值,并表明通过测量SH基团与二硫试剂反应的动力学间接测定蛋白质中SH基团pK值的可能性。将结果与在相同条件下用合成硫醇肽和模型化合物获得的结果进行比较。数据表明,与所有测试的小硫醇化合物相比,精核糖核酸酶亚基间二硫键的超反应性与相邻半胱氨酸残基31和32在中性pH下的高反应性相匹配。精核糖核酸酶的合成六肽片段Ac-Met-Cys-Cys-Arg-Lys-Met-OH,其中包括两个感兴趣的半胱氨酸残基,反应性更强。这些数据以及本文报道的其他结果得出结论,牛精核糖核酸酶31和32位半胱氨酸残基在中性pH下的超反应性主要取决于附近带正电荷基团的存在,特别是赖氨酸-34的ε-NH2,并受两个硫醇的相邻性和蛋白质三级结构的影响。

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