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水分子参与蛋白酶-抑制剂相互作用:火鸡卵类黏蛋白抑制剂第三结构域的Leu18、Ala18和Gly18变体与灰色链霉菌蛋白酶B复合的晶体结构。

Water molecules participate in proteinase-inhibitor interactions: crystal structures of Leu18, Ala18, and Gly18 variants of turkey ovomucoid inhibitor third domain complexed with Streptomyces griseus proteinase B.

作者信息

Huang K, Lu W, Anderson S, Laskowski M, James M N

机构信息

Department of Biochemistry, University of Alberta, Edmonton, Canada.

出版信息

Protein Sci. 1995 Oct;4(10):1985-97. doi: 10.1002/pro.5560041004.

Abstract

Crystal structures of the complexes of Streptomyces griseus proteinase B (SGPB) with three P1 variants of turkey ovomucoid inhibitor third domain (OMTKY3), Leu18, Ala18, and Gly18, have been determined and refined to high resolution. Comparisons among these structures and of each with native, uncomplexed SGPB reveal that each complex features a unique solvent structure in the S1 binding pocket. The number and relative positions of water molecules bound in the S1 binding pocket vary according to the size of the side chain of the P1 residue. Water molecules in the S1 binding pocket of SGPB are redistributed in response to the complex formation, probably to optimize hydrogen bonds between the enzyme and the inhibitor. There are extensive water-mediated hydrogen bonds in the interfaces of the complexes. In all complexes, Asn 36 of OMTKY3 participates in forming hydrogen bonds, via water molecules, with residues lining the S1 binding pocket of SGPB. For a homologous series of aliphatic straight side chains, Gly18, Ala18, Abu18, Ape18, and Ahp18 variants, the binding free energy is a linear function of the hydrophobic surface area buried in the interface of the corresponding complexes. The resulting constant of proportionality is 34.1 cal mol-1 A-2. These structures confirm that the binding of OMTKY3 to the preformed S1 pocket in SGPB involves no substantial structural disturbances that commonly occur in the site-directed mutagenesis studies of interior residues in other proteins, thus providing one of the most reliable assessments of the contribution of the hydrophobic effect to protein-complex stability.

摘要

已确定并将灰色链霉菌蛋白酶B(SGPB)与火鸡卵类粘蛋白抑制剂第三结构域(OMTKY3)的三个P1变体Leu18、Ala18和Gly18形成的复合物的晶体结构精修至高分辨率。对这些结构之间以及每个结构与天然的、未复合的SGPB进行比较后发现,每个复合物在S1结合口袋中都具有独特的溶剂结构。结合在S1结合口袋中的水分子数量和相对位置根据P1残基侧链的大小而变化。SGPB的S1结合口袋中的水分子会因复合物的形成而重新分布,这可能是为了优化酶与抑制剂之间的氢键。在复合物的界面中存在广泛的水介导氢键。在所有复合物中,OMTKY3的Asn 36通过水分子参与与SGPB的S1结合口袋内衬的残基形成氢键。对于一系列同源的脂肪族直链侧链变体Gly18、Ala18、Abu18、Ape18和Ahp18,结合自由能是相应复合物界面中埋藏的疏水表面积的线性函数。由此得到的比例常数为34.1 cal mol-1 A-2。这些结构证实,OMTKY3与SGPB中预先形成的S1口袋的结合不会涉及其他蛋白质内部残基定点诱变研究中常见的重大结构干扰,从而为疏水作用对蛋白质复合物稳定性的贡献提供了最可靠的评估之一。

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