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三种类依布硒啉药物对哺乳动物15-脂氧合酶的抑制作用:量子力学/分子力学和分子力学/泊松-玻尔兹曼表面面积比较研究

Inhibition of Mammalian 15-Lipoxygenase by Three Ebselen-like Drugs. A QM/MM and MM/PBSA Comparative Study.

作者信息

Cebrián-Prats Anna, Rovira Tiffani, Saura Patricia, González-Lafont Àngels, Lluch José M

机构信息

Departament de Química and ‡Institut de Biotecnologia i de Biomedicina (IBB), Universitat Autònoma de Barcelona , 08193 Bellaterra, Barcelona, Spain.

出版信息

J Phys Chem A. 2017 Dec 28;121(51):9752-9763. doi: 10.1021/acs.jpca.7b10416. Epub 2017 Dec 14.

Abstract

Ebselen is a potent competitive inhibitor of the active form of rabbit 15-lipoxygenase, an enzyme involved in many inflammatory diseases. Light-induced Z-to-E isomerization of the ebselen-like 2-(3-benzylidene)-3-oxo-2,3-dihydrobenzo[b]thiophene-7-carboxylic acid methyl ester (BODTCM) molecule was used to convert the weak (Z)-BOTDCM inhibitor into the (E)-isomer with much higher inhibitory capacity. In this study, the binding modes of ebselen, (E)-BOTDCM and (Z)-BOTDCM, have been analyzed to provide molecular insights on the inhibitory potency of ebselen and on the geometric-isomer specificity of (E)- and (Z)-BOTDCM inhibitors. The inhibitor-enzyme structures obtained from docking and molecular dynamics simulations as well as from QM/MM calculations show that the inhibitor molecules are not coordinated to the nonheme iron in the active site. Thermal motion allows ebselen and (E)-BOTDCM to visit a wide range of the configurational space competing with the polyunsaturated fatty acid for binding at the active site. Both molecules present similar MM/PBSA binding free energies. The energy penalty for the bigger geometric deformation undergone by (E)-BODTCM would explain its lower inhibitor potency. The (Z)-isomer is the weakest inhibitor because thermal motion moves it to a region very far from the first coordination sphere of Fe, where it could not compete with the fatty acid substrate.

摘要

依布硒啉是兔15-脂氧合酶活性形式的一种强效竞争性抑制剂,该酶参与多种炎症性疾病。利用类依布硒啉的2-(3-亚苄基)-3-氧代-2,3-二氢苯并[b]噻吩-7-羧酸甲酯(BODTCM)分子的光诱导Z到E异构化,将弱的(Z)-BOTDCM抑制剂转化为具有更高抑制能力的(E)-异构体。在本研究中,对依布硒啉、(E)-BOTDCM和(Z)-BOTDCM的结合模式进行了分析,以提供关于依布硒啉抑制效力以及(E)-和(Z)-BOTDCM抑制剂几何异构体特异性的分子见解。通过对接、分子动力学模拟以及QM/MM计算获得的抑制剂-酶结构表明,抑制剂分子未与活性位点的非血红素铁配位。热运动使依布硒啉和(E)-BOTDCM能够访问广泛的构型空间,与多不饱和脂肪酸竞争在活性位点的结合。这两种分子呈现出相似的MM/PBSA结合自由能。(E)-BODTCM经历的更大几何变形所带来的能量惩罚可以解释其较低的抑制效力。(Z)-异构体是最弱的抑制剂,因为热运动将其移动到远离铁的第一配位球的区域,在那里它无法与脂肪酸底物竞争。

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