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基于烯醇盐反应机制对II型脱氢奎宁酶的纳摩尔级抑制作用。

Nanomolar inhibition of type II dehydroquinase based on the enolate reaction mechanism.

作者信息

Toscano Miguel D, Payne Richard J, Chiba Akira, Kerbarh Olivier, Abell Chris

机构信息

Department of Chemistry, University of Cambridge, University Chemical Laboratory, Lensfield Road, Cambridge, CB2 1EW, UK.

出版信息

ChemMedChem. 2007 Jan;2(1):101-12. doi: 10.1002/cmdc.200600194.

Abstract

We describe the rational design of a novel, highly potent inhibitor of type II dehydroquinase, the dicarboxylate 6. The incorporation of a carboxylate at the 3-position mimics the putative enolate intermediate in the reaction mechanism, and allows a potential electrostatic binding interaction with the arginine on the active site flap. This results in a 1000-fold increase in potency, making the dicarboxylate 6 the most potent inhibitor of type II dehydroquinase reported to date, with a high ligand efficiency of -0.68 kcal mol(-1) per nonhydrogen atom. The systematic dissection of 6 in compounds 7-12, all of which show a drop in potency, confirm the synergistic importance of the two carboxylates, the C3 and C4 hydroxyl groups, and the anhydroquinate ring structure for the potency of 6.

摘要

我们描述了一种新型高效的II型脱氢奎宁酶抑制剂——二羧酸盐6的合理设计。在3位引入羧酸盐模拟了反应机制中假定的烯醇中间体,并允许与活性位点侧翼上的精氨酸进行潜在的静电结合相互作用。这导致活性提高了1000倍,使二羧酸盐6成为迄今为止报道的最有效的II型脱氢奎宁酶抑制剂,每个非氢原子的配体效率高达-0.68 kcal mol⁻¹。对化合物7 - 12中的6进行系统剖析,所有这些化合物的活性均有所下降,证实了两个羧酸盐、C3和C4羟基以及脱水奎尼酸环结构对6的活性具有协同重要性。

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