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通过共价结合配体对莽草酸途径中的脱氢奎尼酸酶进行稳定化处理。

Stabilization of the shikimate pathway enzyme dehydroquinase by covalently bound ligand.

作者信息

Kleanthous C, Reilly M, Cooper A, Kelly S, Price N C, Coggins J R

机构信息

Department of Biochemistry, University of Glasgow, Scotland, United Kingdom.

出版信息

J Biol Chem. 1991 Jun 15;266(17):10893-8.

PMID:2040606
Abstract

Reversible binding of a ligand to an enzyme active site can elicit a variety of changes in the protein, such as conformational changes (close to the site of binding or communicated over long distances), changes in the ionization state of surrounding amino acid side chains, changes in the interaction of the target protein with other subunits (or other proteins), or even changes in the thermodynamic stability of the protein. Relatively little attention has been given to studying these effects in proteins to which the ligand has been irreversibly bound, yet this can be a convenient way of studying the effects of ligand binding in the absence of association/dissociation equilibria. We report the dramatic changes which occur to the shikimate pathway enzyme dehydroquinase when ligand is attached to its active site after borohydride reduction of the mechanistically important Schiff's base intermediates. The effects of this modification have been characterized by limited proteolysis, circular dichroism, guanidine hydrochloride denaturation, and differential scanning calorimetry. The conclusions from these studies are that although anchoring the ligand at the active site does not cause a gross change in conformation, it does increase markedly the conformational stability of the protein. This is conclusively established by three separate experiments: 1) the modified protein is completely resistant to proteases, whereas the unmodified protein is very susceptible to proteolysis; 2) the concentration of guanidine hydrochloride required to unfold the ligand-linked dehydroquinase is 3-4-fold greater than that of the unmodified protein; 3) the melting temperature (Tm) of the modified protein is 40 degrees C higher than that of the unmodified protein. These results are a very clear example of the thermodynamic link between ligand binding, conformational stability, and proteolytic susceptibility in vitro and will be a useful system for dissecting the contributions of individual protein-ligand interactions to these parameters.

摘要

配体与酶活性位点的可逆结合可引发蛋白质的多种变化,例如构象变化(靠近结合位点或远距离传递)、周围氨基酸侧链电离状态的变化、目标蛋白与其他亚基(或其他蛋白质)相互作用的变化,甚至蛋白质热力学稳定性的变化。相对而言,对于配体不可逆结合的蛋白质中这些效应的研究较少,然而这可能是在不存在缔合/解离平衡的情况下研究配体结合效应的一种便捷方式。我们报道了在对具有重要机制意义的席夫碱中间体进行硼氢化还原后,当配体连接到莽草酸途径酶脱氢奎尼酸酶的活性位点时所发生的显著变化。这种修饰的效应已通过有限蛋白酶解、圆二色性、盐酸胍变性和差示扫描量热法进行了表征。这些研究得出的结论是,尽管将配体锚定在活性位点不会引起构象的总体变化,但确实会显著提高蛋白质的构象稳定性。这通过三个独立实验得到了确凿证实:1)修饰后的蛋白质对蛋白酶完全有抗性,而未修饰的蛋白质非常容易被蛋白酶解;2)使配体连接的脱氢奎尼酸酶展开所需的盐酸胍浓度比未修饰蛋白质的高3 - 4倍;3)修饰后蛋白质的熔解温度(Tm)比未修饰蛋白质高40摄氏度。这些结果是体外配体结合、构象稳定性和蛋白水解敏感性之间热力学联系的一个非常清晰的例子,并且将是一个用于剖析单个蛋白质 - 配体相互作用对这些参数贡献的有用系统。

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