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强效家族 18 壳聚糖酶抑制剂:X 射线结构、亲和力和结合机制。

Potent family-18 chitinase inhibitors: x-ray structures, affinities, and binding mechanisms.

机构信息

Biochemistry-Electrochemistry Research Unit, School of Chemistry, Institute of Science, Suranaree University of Technology, Nakhon Ratchasima 30000, Thailand.

出版信息

J Biol Chem. 2011 Jul 8;286(27):24312-23. doi: 10.1074/jbc.M110.183376. Epub 2011 Apr 29.

Abstract

Six novel inhibitors of Vibrio harveyi chitinase A (VhChiA), a family-18 chitinase homolog, were identified by in vitro screening of a library of pharmacologically active compounds. Unlike the previously identified inhibitors that mimicked the reaction intermediates, crystallographic evidence from 14 VhChiA-inhibitor complexes showed that all of the inhibitor molecules occupied the outer part of the substrate-binding cleft at two hydrophobic areas. The interactions at the aglycone location are well defined and tightly associated with Trp-397 and Trp-275, whereas the interactions at the glycone location are patchy, indicating lower affinity and a loose interaction with two consensus residues, Trp-168 and Val-205. When Trp-275 was substituted with glycine (W275G), the binding affinity toward all of the inhibitors dramatically decreased, and in most structures two inhibitor molecules were found to stack against Trp-397 at the aglycone site. Such results indicate that hydrophobic interactions are important for binding of the newly identified inhibitors by the chitinase. X-ray data and isothermal microcalorimetry showed that the inhibitors occupied the active site of VhChiA in three different binding modes, including single-site binding, independent two-site binding, and sequential two-site binding. The inhibitory effect of dequalinium in the low nanomolar range makes this compound an extremely attractive lead compound for plausible development of therapeutics against human diseases involving chitinase-mediated pathologies.

摘要

六种新型 Vibrio harveyi 几丁质酶 A(VhChiA)抑制剂(一种 18 家族几丁质酶同系物)通过体外筛选药理学活性化合物文库被鉴定出来。与之前模拟反应中间体的鉴定抑制剂不同,来自 14 个 VhChiA-抑制剂复合物的晶体学证据表明,所有抑制剂分子都占据了底物结合裂隙的外部分,位于两个疏水区。糖基部分的相互作用明确且与 Trp-397 和 Trp-275 紧密相关,而糖基部分的相互作用则是零散的,表明亲和力较低,与两个共识残基 Trp-168 和 Val-205 之间的相互作用较松散。当 Trp-275 被甘氨酸取代(W275G)时,所有抑制剂的结合亲和力都显著降低,而且在大多数结构中,发现两个抑制剂分子在糖基部位与 Trp-397 堆叠。这些结果表明,疏水相互作用对几丁质酶识别新鉴定的抑制剂的结合非常重要。X 射线数据和等温热力学表明,抑制剂以三种不同的结合模式占据 VhChiA 的活性部位,包括单一位点结合、独立的双位点结合和顺序的双位点结合。在纳米摩尔范围内,地喹氯铵的抑制作用使该化合物成为一种极具吸引力的先导化合物,可能开发出针对涉及几丁质酶介导的病理学的人类疾病的治疗方法。

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