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作为HIV-1蛋白酶抑制剂的非肽环氰基胍:合成、构效关系及X射线晶体结构研究

Nonpeptide cyclic cyanoguanidines as HIV-1 protease inhibitors: synthesis, structure-activity relationships, and X-ray crystal structure studies.

作者信息

Jadhav P K, Woerner F J, Lam P Y, Hodge C N, Eyermann C J, Man H W, Daneker W F, Bacheler L T, Rayner M M, Meek J L, Erickson-Viitanen S, Jackson D A, Calabrese J C, Schadt M, Chang C H

机构信息

Chemical and Physical Sciences Department, The DuPont Merck Pharmaceutical Company, Experimental Station, P.O. Box 80500, Wilmington, Delaware 19880-0500, USA.

出版信息

J Med Chem. 1998 Apr 23;41(9):1446-55. doi: 10.1021/jm970524i.

Abstract

Comparison of the high-resolution X-ray structures of the native HIV-1 protease and its complexes with the inhibitors suggested that the enzyme flaps are flexible. The movement at the tip of the flaps could be as large as 7 A. On the basis of this observation, cyclic cyanoguanidines have been designed, synthesized, and evaluated as HIV-1 protease (PR) inhibitors. Cyclic cyanoguanidines were found to be very potent inhibitors of HIV-1 protease. The choice of cyclic cyanoguanidines over cyclic guanidines was based on the reduced basicity of the former. X-ray structure studies of the HIV PR complex with cyclic cyanoguanidine demonstrated that in analogy to cyclic urea, cyclic cyanoguanidines also displace the unique structural water molecule. The structure-activity relationship of the cyclic cyanoguanidines is compared with that of the corresponding cyclic urea analogues. The differences in binding constants of the two series of compounds have been rationalized using high-resolution X-ray structure information.

摘要

天然HIV-1蛋白酶及其与抑制剂复合物的高分辨率X射线结构比较表明,该酶的瓣片具有灵活性。瓣片尖端的移动幅度可达7埃。基于这一观察结果,人们设计、合成并评估了环状氰基胍作为HIV-1蛋白酶(PR)抑制剂。结果发现,环状氰基胍是HIV-1蛋白酶的强效抑制剂。选择环状氰基胍而非环状胍是基于前者较低的碱性。HIV PR与环状氰基胍复合物的X射线结构研究表明,与环状脲类似,环状氰基胍也会取代独特的结构水分子。将环状氰基胍的构效关系与相应的环状脲类似物进行了比较。利用高分辨率X射线结构信息对这两类化合物结合常数的差异进行了合理分析。

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