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降低与酶结合构象灵活抑制剂的熵障。

Lowering the entropic barrier for binding conformationally flexible inhibitors to enzymes.

作者信息

Khan A R, Parrish J C, Fraser M E, Smith W W, Bartlett P A, James M N

机构信息

Department of Biochemistry, University of Alberta, Edmonton, Canada T6G 2H7, and Department of Chemistry, University of California, Berkeley, California 94720-1460, USA.

出版信息

Biochemistry. 1998 Dec 1;37(48):16839-45. doi: 10.1021/bi9821364.

Abstract

The design of inhibitors with enhanced potency against proteolytic enzymes has many applications for the treatment of human diseases. In addition to the optimization of chemical interactions between the enzyme and inhibitor, the binding affinity can be increased by constraining the inhibitor to the conformation that is recognized by the enzyme, thus lowering the entropic barrier to complex formation. We have structurally characterized the complexes of a macrocyclic pentapeptide inhibitor and its acyclic analogue with penicillopepsin, an aspartic proteinase, to study the effect of conformational constraint on the binding affinity. The phosphonate-based macrocycle PPi4 (Ki = 0.10 nM) is covalently linked at the P2-Asn and P1'-Phe side chains [nomenclature of Schechter and Berger, Biochim. Biophys. Res. Commun. (1967) 27, 157-162] via an amide bond, relative to the acyclic compound PPi3 (Ki = 42 nM). Comparisons of the high-resolution crystal structures of PPi4-penicillopepsin (0.95 A) and PPi3-penicillopepsin (1.45 A) reveal that the conformations of the inhibitors and their interactions with the enzyme are similar. The 420-fold increase in the binding affinity of PPi4 is attributed to a reduction in its conformational flexibility, thus providing the first rigorous measure of the entropic contribution to the binding energy in a protein-ligand complex and stressing the advantages of the design strategy.

摘要

设计对蛋白水解酶具有更高活性的抑制剂在人类疾病治疗中有许多应用。除了优化酶与抑制剂之间的化学相互作用外,还可通过将抑制剂限制在酶所识别的构象来提高结合亲和力,从而降低形成复合物的熵垒。我们对一种大环五肽抑制剂及其无环类似物与天冬氨酸蛋白酶青霉胃蛋白酶的复合物进行了结构表征,以研究构象限制对结合亲和力的影响。相对于无环化合物PPi3(Ki = 42 nM),基于膦酸酯的大环化合物PPi4(Ki = 0.10 nM)通过酰胺键在P2-天冬酰胺和P1'-苯丙氨酸侧链处共价连接[Schechter和Berger的命名法,《生物化学与生物物理研究通讯》(1967年)27卷,157 - 162页]。PPi4 - 青霉胃蛋白酶(0.95 Å)和PPi3 - 青霉胃蛋白酶(1.45 Å)的高分辨率晶体结构比较表明,抑制剂的构象及其与酶的相互作用相似。PPi4结合亲和力增加420倍归因于其构象灵活性的降低,从而首次严格测定了蛋白质 - 配体复合物中熵对结合能的贡献,并强调了该设计策略的优势。

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