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同手性(3S,3'S)-虾青素与基质金属蛋白酶-13(MMP-13)非共价结合的分子模拟

Molecular modeling of non-covalent binding of homochiral (3S,3'S)-astaxanthin to matrix metalloproteinase-13 (MMP-13).

作者信息

Bikádi Zsolt, Hazai Eszter, Zsila Ferenc, Lockwood Samuel F

机构信息

Virtua Drug, Ltd, Budapest, Hungary.

出版信息

Bioorg Med Chem. 2006 Aug 15;14(16):5451-8. doi: 10.1016/j.bmc.2006.04.047. Epub 2006 May 23.

Abstract

Inhibitors for matrix metalloproteinases (MMPs) are under investigation for the treatment of various important chronic illnesses, including cancer, arthritis, and cardiovascular disease (CVD). In particular, MMP-13 is currently being probed as a potential key target in CVD and malignant disease due to its documented effects on extracellular matrix (ECM) remodeling, important in the pathophysiology of these diseases. Within the family of related mammalian MMP enzymes, MMP-13 possesses a large hydrophobic binding pocket relative to that of other MMPs. Homochiral astaxanthin (3S,3'S-AST; 3S,3'S-dihydroxy-beta,beta-carotene-4,4'-dione), an important antioxidant and anti-inflammatory xanthophyll carotenoid, is an active metabolite of several novel soft drugs in clinical development; it is also extensively used and tested as a human nutraceutical. In the current study, the prediction of the geometry and energetics of its binding to human MMP-13 was conducted with molecular modeling. The method used was found to predict the energy of binding of known ligands of MMP-13 with great precision. Blind docking using the whole protein target was then used in order to identify the possible binding site(s) of AST. AST was predicted to bind at several sites in close proximity to the active center. Subsequent analyses focused on the binding site at the atomic (i.e., amino acid sequence) level suggested that AST can bind to MMP-13 with high affinity and favorable energetics. Therefore, the modeling study predicts potential direct enzyme-inhibitory activity of AST against MMP-13, a behavior that may be exploited in mammalian systems in which pathological upregulation of MMP activity is paramount.

摘要

基质金属蛋白酶(MMPs)抑制剂正在被研究用于治疗各种重要的慢性疾病,包括癌症、关节炎和心血管疾病(CVD)。特别是,MMP-13目前正作为CVD和恶性疾病的潜在关键靶点进行研究,因为它对细胞外基质(ECM)重塑有显著影响,而这在这些疾病的病理生理学中很重要。在相关的哺乳动物MMP酶家族中,MMP-13相对于其他MMPs具有一个大的疏水结合口袋。同手性虾青素(3S,3'S-AST;3S,3'S-二羟基-β,β-胡萝卜素-4,4'-二酮)是一种重要的抗氧化和抗炎叶黄素类胡萝卜素,是几种处于临床开发阶段的新型软药的活性代谢产物;它也被广泛用作人类营养保健品并进行了测试。在本研究中,通过分子建模对其与人类MMP-13结合的几何结构和能量进行了预测。发现所使用的方法能够非常精确地预测MMP-13已知配体的结合能量。然后使用针对整个蛋白质靶点的盲对接来确定AST可能的结合位点。预测AST会在靠近活性中心的几个位点结合。随后在原子(即氨基酸序列)水平上对结合位点的分析表明,AST可以以高亲和力和有利的能量与MMP-13结合。因此,该建模研究预测了AST对MMP-13潜在的直接酶抑制活性,这种行为可能在MMP活性病理性上调至关重要的哺乳动物系统中得到利用。

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