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白色念珠菌二氢叶酸还原酶的X射线晶体结构:高分辨率三元复合物,其中NADPH的二氢烟酰胺部分被一种抑制剂取代。

X-Ray crystal structures of Candida albicans dihydrofolate reductase: high resolution ternary complexes in which the dihydronicotinamide moiety of NADPH is displaced by an inhibitor.

作者信息

Whitlow M, Howard A J, Stewart D, Hardman K D, Chan J H, Baccanari D P, Tansik R L, Hong J S, Kuyper L F

机构信息

GlaxoSmithKline, Inc., Five Moore Drive, Research Triangle Park, North Carolina 27709, USA.

出版信息

J Med Chem. 2001 Aug 30;44(18):2928-32. doi: 10.1021/jm0101444.

Abstract

X-ray crystallographic analysis of 5-(4'-substituted phenyl)sulfanyl-2,4-diaminoquinazoline inhibitors in ternary complex with Candida albicans dihydrofolate reductase (DHFR) and NADPH revealed two distinct modes of binding. The two compounds with small 4'-substituents (H and CH3) were found to bind with the phenyl group oriented in the plane of the quinazoline ring system and positioned adjacent to the C-helix. In contrast, the more selective inhibitors with larger 4'-substituents (tert-butyl and N-morpholino) were bound to the enzyme with the phenyl group perpendicular to the quinazoline ring and positioned in the region of the active site that typically binds the dihydronicotinamide moiety of NADPH. The cofactor appeared bound to DHFR but with the disordered dihydronicotinamide swung away from the protein surface and into solution. This unusual inhibitor binding mode may play an important role in the high DHFR selectivity of these compounds and also may provide new ideas for inhibitor design.

摘要

对5-(4'-取代苯基)硫烷基-2,4-二氨基喹唑啉抑制剂与白色念珠菌二氢叶酸还原酶(DHFR)和NADPH形成的三元复合物进行X射线晶体学分析,揭示了两种不同的结合模式。发现两个具有小的4'-取代基(H和CH3)的化合物,其苯基在喹唑啉环系统平面内取向,并位于C-螺旋附近。相反,具有较大4'-取代基(叔丁基和N-吗啉代)的更具选择性的抑制剂,其苯基垂直于喹唑啉环与酶结合,并位于通常结合NADPH二氢烟酰胺部分的活性位点区域。辅因子似乎与DHFR结合,但无序的二氢烟酰胺从蛋白质表面摆动到溶液中。这种不寻常的抑制剂结合模式可能在这些化合物的高DHFR选择性中起重要作用,也可能为抑制剂设计提供新思路。

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