首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Molecular Dynamics Simulations of Orai Reveal How the Third Transmembrane Segment Contributes to Hydration and Ca2+ Selectivity in Calcium Release-Activated Calcium Channels
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Molecular Dynamics Simulations of Orai Reveal How the Third Transmembrane Segment Contributes to Hydration and Ca2+ Selectivity in Calcium Release-Activated Calcium Channels

机译:奥莱的分子动力学模拟揭示了第三跨膜段如何在钙释放活化的钙通道中有助于水合和Ca2 +选择性

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摘要

Calcium release-activated calcium (CRAG) channels open upon depletion of Ca2+ from the endoplasmic reticulum, and when open, they are permeable to a selective flux of calcium ions. The atomic structure of Orai, the pore domain of CRAC channels, from Drosophila melanogaster has revealed many details about conduction and selectivity in this family of ion channels. However, it is still unclear how residues on the third transmembrane helix can affect the conduction properties of the channel. Here, molecular dynamics and Brownian dynamics simulations were employed to analyze how a conserved glutamate residue on the third transmembrane helix (E262) contributes to selectivity. The comparison between the wild-type and mutated channels revealed a severe impact of the mutation on the hydration pattern of the pore domain and on the dynamics of residues K270, and Brownian dynamics simulations proved that the altered configuration of residues K270 in the mutated channel impairs selectivity to Ca2+ over Na+. The crevices of water molecules, revealed by molecular dynamics simulations, are perfectly located to contribute to the dynamics of the hydrophobic gate and the basic gate, suggesting a possible role in channel opening and in selectivity function.
机译:钙释放活化的钙(CRAG)在成内质网的Ca2 +耗尽时打开,并且当开放时,它们可渗透到选择性通量的钙离子。来自CRAC渠道的孔隙区域的奥莱的原子结构,来自德罗斯托洛拉梅拉替纳洛斯拿斯特揭示了在这家离子通道中的导通和选择性的许多细节。然而,尚不清楚第三跨膜螺旋中的残留物如何影响通道的传导性能。这里,采用分子动力学和布朗动力学模拟来分析第三跨膜螺旋(E262)上的保守谷氨酸残基有助于选择性。野生型和突变通道之间的比较揭示了突变对孔隙结构域的水化图案的严重影响以及残留物K270的动态,并且布朗动力学模拟证明了突变通道损害中残留物K270的改变构型在Na +上对CA2 +的选择性。通过分子动力学模拟揭示的水分子的裂缝是完美的,以促进疏水栅极和基本栅极的动态,表明在通道开口和选择性函数中的可能作用。

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