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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Lipid interaction sites on channels, transporters and receptors: Recent insights from molecular dynamics simulations
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Lipid interaction sites on channels, transporters and receptors: Recent insights from molecular dynamics simulations

机译:渠道,运输司和受体上的脂质相互作用位点:分子动力学模拟的最近见解

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Lipid molecules are able to selectively interact with specific sites on integral membrane proteins, and modulate their structure and function. Identification and characterization of these sites are of importance for our understanding of the molecular basis of membrane protein function and stability, and may facilitate the design of lipid-like drug molecules. Molecular dynamics simulations provide a powerful tool for the identification of these sites, complementing advances in membrane protein structural biology and biophysics. We describe recent notable biomolecular simulation studies which have identified lipid interaction sites on a range of different membrane proteins. The sites identified in these simulation studies agree well with those identified by complementary experimental techniques. This demonstrates the power of the molecular dynamics approach in the prediction and characterization of lipid interaction sites on integral membrane proteins.
机译:脂质分子能够选择性地与整体膜蛋白上的特定位点相互作用,并调节它们的结构和功能。 这些位点的鉴定和表征对于我们对膜蛋白质功能和稳定性的分子基础的理解具有重要性,并且可以促进脂质样药分子的设计。 分子动力学模拟提供了一种强大的工具,用于鉴定这些位点,互补膜蛋白结构生物学和生物物理学的进步。 我们描述了最近的显着的生物分子模拟研究,其在一系列不同的膜蛋白上鉴定了脂质相互作用位点。 在这些模拟研究中确定的网站对通过互补实验技术鉴定的网站同意。 这证明了分子动力学方法在整体膜蛋白上脂质相互作用位点的预测和表征中的能力。

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