Abou-Zeid Laila A, El-Mowafy Abdalla M
Department of Medicinal Chemistry, Faculty of Pharmacy, Mansoura University, Mansoura, Egypt.
Chirality. 2004 Mar;16(3):190-5. doi: 10.1002/chir.20007.
Resveratrol (RSVL) is a phytoestrogen that occurs naturally in two forms (trans- (E) and cis- (Z)). We have conducted molecular dynamics (MD) studies to differentially characterize the estrogen receptor-alpha (ER-alpha) binding profiles of RSVL stereoisomers. Favorable orientations for RSVL isomers at the ER-alpha pocket were first inferred from (1) alignment with pharmacophoric elements of the pure ER-alpha agonists estradiol (E2) and (2) assessment of ligand recognition by the ER-alpha binding domain. Subsequently, these orientations for RSVL isomers were subjected to MD analyses versus E2. A 100-picosecond MD simulation revealed that E2 contributed four stable hydrogen bonds with the key ER-alpha pocket residue: Arg394, Glu353, His524, and Leu525. Further, E2 displayed favorable binding energy, conformational energy change (DeltaE), and movement of the binding pocket residues (RMSd). Compared to E2, (E)-RSVL lacked a hydrogen bond (HB) with His524 but formed three additional bonds with Gly521, Phe404, and Met343 of the ER-alpha pocket. Further, (E)-RSVL conferred more favorable energy of interaction, less favorable DeltaE, but comparable RMSd values. In contrast, (Z)-RSVL orientations missed hydrogen bonding (HB) with His524 and Leu525, two essential ligand binding residues, and/or produced considerably less favorable-binding energy, -DeltaE, and -RMSd values than did (E)-RSVL. In conclusion, the present study demonstrates the utility of this MD model in distinguishing between RSVL stereoisomers. The weak binding of (Z)-RSVL by the human ER-alpha binding is congruent with its inferior ligand profiles in ER-endowed biological systems. Further, evidence is provided for a considerable variation in the mode of recognition of the mixed agonist/antagonist (E)-RSVL, and the pure agonist E2.
白藜芦醇(RSVL)是一种植物雌激素,天然存在两种形式(反式-(E)和顺式-(Z))。我们进行了分子动力学(MD)研究,以区分表征RSVL立体异构体与雌激素受体-α(ER-α)的结合情况。首先从以下两方面推断RSVL异构体在ER-α口袋中的有利取向:(1)与纯ER-α激动剂雌二醇(E2)的药效基团元素对齐,以及(2)评估ER-α结合域对配体的识别。随后,对RSVL异构体的这些取向与E2进行MD分析。100皮秒的MD模拟显示,E2与ER-α口袋关键残基Arg394、Glu353、His524和Leu525形成了四个稳定的氢键。此外,E2表现出有利的结合能、构象能变化(ΔE)以及结合口袋残基的移动(均方根偏差,RMSd)。与E2相比,(E)-RSVL与His524缺乏氢键(HB),但与ER-α口袋的Gly521、Phe404和Met343形成了另外三个键。此外,(E)-RSVL赋予了更有利的相互作用能、不太有利的ΔE,但均方根偏差值相当。相比之下,(Z)-RSVL的取向与His524和Leu525这两个重要的配体结合残基缺乏氢键,并且/或者产生的结合能、-ΔE和-RMSd值比(E)-RSVL明显更不利。总之,本研究证明了该MD模型在区分RSVL立体异构体方面的实用性。人ER-α结合对(Z)-RSVL的弱结合与其在具有ER的生物系统中较差的配体情况一致。此外,还提供了证据表明混合激动剂/拮抗剂(E)-RSVL和纯激动剂E2的识别模式存在相当大的差异。