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β-分泌酶底物结合域构象转变的利用 NMA 及其对抑制剂识别的影响:BACE1-杨梅素的案例研究。

Conformational transition in the substrate binding domain of β-secretase exploited by NMA and its implication in inhibitor recognition: BACE1-myricetin a case study.

机构信息

Saroj Mohan Institute of Technology, Guptipara, Hooghly, Pin 712512, India.

出版信息

Neurochem Int. 2011 Jul;58(8):914-23. doi: 10.1016/j.neuint.2011.02.021. Epub 2011 Feb 24.

DOI:10.1016/j.neuint.2011.02.021
PMID:21354237
Abstract

BACE1 is a key protease involved in the proteolysis of amyloid precursor protein (APP) that generates a toxic peptide amyloid beta (Aβ), a pathological feature of Alzheimer's disease (AD). The enzyme is believed to possess an open and a closed conformation that corresponds to its free and inhibitor-bound form respectively. Here, we study the dynamic transition of BACE1 employing normal mode analysis (NMA) using a simplified elastic network model (ENM). Estimation of the catalytic cavity volume on the structures of BACE1 encoded by the lowest frequency normal mode reveals the dynamical transition of the enzyme from the open to the closed conformer. Detailed analysis reveals that concerted movement of different loop segments in the active site of the protein, namely flap regions, 10s loop, A loop and F loop, squeeze the catalytic cavity between the N-terminal and C-terminal lobe of the substrate binding domain of BACE1. We also propose that the NMA encoded multiple receptor conformations (MRC) of BACE1 elucidate the pharmacophoric feature necessary to inhibit the enzyme by a polyphenol, myricetin. van der Waals interaction is found to be the main driving force that guides the ligand induced conformational switching to the closed conformer. We suggest that NMA derived MRC of BACE1 is an efficient way to treat the receptor flexibility in docking and thus can be further applied in virtual screening and structure based drug design.

摘要

BACE1 是一种参与淀粉样前体蛋白(APP)蛋白水解的关键蛋白酶,它会产生一种毒性肽淀粉样β(Aβ),这是阿尔茨海默病(AD)的一个病理特征。该酶被认为具有开放和封闭构象,分别对应于其自由形式和抑制剂结合形式。在这里,我们使用简化的弹性网络模型(ENM)通过正常模式分析(NMA)研究 BACE1 的动态转变。在由最低频率正常模式编码的 BACE1 结构上估计催化腔体积,揭示了酶从开放构象到封闭构象的动力学转变。详细分析表明,蛋白质活性位点中不同环段的协同运动,即瓣区、10s 环、A 环和 F 环,将催化腔挤压在 BACE1 底物结合域的 N 端和 C 端叶之间。我们还提出,BACE1 的 NMA 编码的多受体构象(MRC)阐明了通过多酚杨梅素抑制酶所需的药效特征。范德华相互作用被发现是引导配体诱导的构象转变为封闭构象的主要驱动力。我们建议 BACE1 的 NMA 衍生的 MRC 是一种治疗受体灵活性的有效方法,可进一步应用于虚拟筛选和基于结构的药物设计。

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