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Molecular Dynamics Simulations of Kir2.2 Interactions with an Ensemble of Cholesterol Molecules

机译:Kir2.2与胆固醇分子相互作用的分子动力学模拟

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摘要

Cholesterol is a major regulator of multiple types of ion channels, but the specific mechanisms and the dynamics of its interactions with the channels are not well understood. Kir2 channels were shown to be sensitive to cholesterol through direct interactions with “cholesterol-sensitive” regions on the channel protein. In this work, we used Martini coarse-grained simulations to analyze the long (μs) timescale dynamics of cholesterol with Kir2.2 channels embedded into a model membrane containing POPC phospholipid with 30 mol% cholesterol. This approach allows us to simulate the dynamic, unbiased migration of cholesterol molecules from the lipid membrane environment to the protein surface of Kir2.2 and explore the favorability of cholesterol interactions at both surface sites and recessed pockets of the channel. We found that the cholesterol environment surrounding Kir channels forms a complex milieu of different short- and long-term interactions, with multiple cholesterol molecules concurrently interacting with the channel. Furthermore, utilizing principles from network theory, we identified four discrete cholesterol-binding sites within the previously identified cholesterol-sensitive region that exist depending on the conformational state of the channel—open or closed. We also discovered that a twofold decrease in the cholesterol level of the membrane, which we found earlier to increase Kir2 activity, results in a site-specific decrease of cholesterol occupancy at these sites in both the open and closed states: cholesterol molecules at the deepest of these discrete sites shows no change in occupancy at different cholesterol levels, whereas the remaining sites showed a marked decrease in occupancy.
机译:胆固醇是多种类型离子通道的主要调节剂,但其具体机​​理及其与通道相互作用的动力学尚不清楚。通过与通道蛋白上的“胆固醇敏感”区域直接相互作用,表明Kir2通道对胆固醇敏感。在这项工作中,我们使用马蒂尼(Martini)粗粒度模拟来分析胆固醇的长时间(μs)时标动力学,其中Kir2.2通道嵌入包含30%胆固醇的POPC磷脂的模型膜中。这种方法使我们能够模拟胆固醇分子从脂质膜环境到Kir2.2蛋白质表面的动态,无偏迁移,并探索胆固醇在通道的两个表面位点和凹陷处的相互作用。我们发现,Kir通道周围的胆固醇环境形成了不同的短期和长期相互作用的复杂环境,多个胆固醇分子同时与通道相互作用。此外,利用网络理论的原理,我们在先前确定的胆固醇敏感区域内确定了四个离散的胆固醇结合位点,这些位点取决于通道的构象状态(打开或关闭)而存在。我们还发现,膜的胆固醇水平降低了两倍,而我们先前发现这会增加Kir2活性,从而导致这些位点在开放和闭合状态下胆固醇的位点特异性降低:最深处的胆固醇分子在不同的胆固醇水平下,这些离散位点中的5个位点的占用率没有变化,而其余位点的占用率则显着下降。

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