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模拟MLN64和StAR蛋白的StART结构域与胆固醇结合时的结构。

Modeling the structure of the StART domains of MLN64 and StAR proteins in complex with cholesterol.

作者信息

Murcia Marta, Faráldo-Gómez José D, Maxfield Frederick R, Roux Benoît

机构信息

Department of Physiology and Biophysics, Weill Medical College of Cornell University, New York, NY 10021, USA.

出版信息

J Lipid Res. 2006 Dec;47(12):2614-30. doi: 10.1194/jlr.M600232-JLR200. Epub 2006 Sep 21.

Abstract

Steroidogenic acute regulatory protein-related lipid transfer (StART) domains are ubiquitously involved in intracellular lipid transport and metabolism and other cell-signaling events. In this work, we use a flexible docking algorithm, comparative modeling, and molecular dynamics (MD) simulations to generate plausible three-dimensional atomic models of the StART domains of human metastatic lymph node 64 (MLN64) and steroidogenic acute regulatory protein (StAR) proteins in complex with cholesterol. Our results show that cholesterol can adopt a similar conformation in the binding cavity in both cases and that the main contribution to the protein-ligand interaction energy derives from hydrophobic contacts. However, hydrogen-bonding and water-mediated interactions appear to be important in the fine-tuning of the binding affinity and the position of the ligand. To gain insights into the mechanism of binding, we carried out steered MD simulations in which cholesterol was gradually extracted from within the StAR model. These simulations indicate that a transient opening of loop Omega1 may be sufficient for uptake and release, and they also reveal a pathway of intermediate states involving residues known to be crucial for StAR activity. Based on these observations, we suggest specific mutagenesis targets for binding studies of cholesterol and its derivatives that could improve our understanding of the structural determinants for ligand binding by sterol carrier proteins.

摘要

类固醇生成急性调节蛋白相关脂质转运(StART)结构域广泛参与细胞内脂质转运、代谢及其他细胞信号事件。在本研究中,我们使用灵活对接算法、比较建模和分子动力学(MD)模拟,生成了人类转移性淋巴结64(MLN64)和类固醇生成急性调节蛋白(StAR)蛋白的StART结构域与胆固醇复合物的合理三维原子模型。我们的结果表明,在两种情况下胆固醇在结合腔内可采取相似构象,且蛋白质-配体相互作用能的主要贡献来自疏水接触。然而,氢键和水介导的相互作用在结合亲和力的微调及配体位置方面似乎很重要。为深入了解结合机制,我们进行了引导MD模拟,其中胆固醇从StAR模型中逐渐提取。这些模拟表明,环Omega1的瞬时开放可能足以实现摄取和释放,并且还揭示了涉及已知对StAR活性至关重要的残基的中间状态途径。基于这些观察结果,我们提出了用于胆固醇及其衍生物结合研究的特定诱变靶点,这可能会增进我们对甾醇载体蛋白配体结合结构决定因素的理解。

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