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靶向 A 类β-内酰胺酶的隐藏位点。

Targeting a hidden site on class A beta-lactamases.

机构信息

Marmara University, Department of Bioengineering, Istanbul, Turkey.

Bogazici University, Department of Chemical Engineering, Istanbul, Turkey.

出版信息

J Mol Graph Model. 2018 Sep;84:125-133. doi: 10.1016/j.jmgm.2018.06.007. Epub 2018 Jun 18.

Abstract

Increasing resistance against available orthosteric beta-lactamase inhibitors necessitates the search for novel and powerful inhibitor molecules. In this respect, allosteric inhibitors serve as attractive alternatives. Here, we examine the structural basis of inhibition in a hidden, druggable pocket in TEM-1 beta-lactamase. Based on crystallographic evidence that 6-cyclohexyl-1-hexyl-β-D-maltoside (CYMAL-6) binds to this site, first we determined the kinetic mechanism of inhibition by CYMAL-6. Activity measurements with CYMAL-6 showed that it competitively inhibits the wild type enzyme. Interestingly, it exhibits a steep dose-response curve with an IC50 of 100 μM. The IC50 value changes neither with different enzyme concentration nor with incubation of the enzyme with the inhibitor, showing that inhibition is not aggregation-based. The presence of the same concentrations of CYMAL-6 does not influence the activity of lactate dehydrogenase, further confirming the specificity of CYMAL-6 for TEM-1 beta-lactamase. Then, we identified compounds with high affinity to this allosteric site by virtual screening using Glide and Schrödinger Suite. Virtual screening performed with 500,000 drug like compounds from the ZINC database showed that top scoring compounds interact with the hydrophobic pocket that forms between H10 and H11 helices and with the catalytically important Arg244 residue through pi-cation interactions. Discovery of novel chemical scaffolds that target this allosteric site will pave the way for a new avenue in the design of new antimicrobials.

摘要

由于现有正位变构β-内酰胺酶抑制剂的耐药性不断增加,因此需要寻找新型强效抑制剂分子。在这方面,变构抑制剂是很有吸引力的替代品。在这里,我们研究了 TEM-1 内酰胺酶中一个隐藏的、可成药的变构口袋的抑制结构基础。基于晶体学证据表明 6-环己基-1-己基-β-D-麦芽糖苷(CYMAL-6)结合到该位点,我们首先确定了 CYMAL-6 对该酶的抑制动力学机制。用 CYMAL-6 进行的活性测量表明,它竞争性地抑制野生型酶。有趣的是,它表现出陡峭的剂量反应曲线,IC50 值为 100μM。IC50 值既不会随不同的酶浓度变化,也不会随酶与抑制剂孵育而变化,这表明抑制不是基于聚集的。相同浓度的 CYMAL-6 不会影响乳酸脱氢酶的活性,进一步证实了 CYMAL-6 对 TEM-1 内酰胺酶的特异性。然后,我们通过使用 Glide 和 Schrödinger Suite 的虚拟筛选来鉴定对这个变构位点具有高亲和力的化合物。从 ZINC 数据库中对 50 万个类似药物的化合物进行虚拟筛选表明,排名靠前的化合物通过 π-阳离子相互作用与 H10 和 H11 螺旋之间形成的疏水性口袋以及催化上重要的 Arg244 残基相互作用。发现靶向该变构位点的新型化学支架将为设计新型抗菌药物开辟新途径。

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