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Structural basis for ion selectivity revealed by high-resolution crystal structure of Mg2+ channel MgtE

机译:Mg2 +通道MgtE的高分辨率晶体结构揭示了离子选择性的结构基础

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摘要

Magnesium is the most abundant divalent cation in living cells and is crucial to several biological processes. MgtE is a Mg2+ channel distributed in all domains of life that contributes to the maintenance of cellular Mg2+ homeostasis. Here we report the high-resolution crystal structures of the transmembrane domain of MgtE, bound to Mg2+, Mn2+ and Ca2+. The high-resolution Mg2+-bound crystal structure clearly visualized the hydrated Mg2+ ion within its selectivity filter. Based on those structures and biochemical analyses, we propose a cation selectivity mechanism for MgtE in which the geometry of the hydration shell of the fully hydrated Mg2+ ion is recognized by the side-chain carboxylate groups in the selectivity filter. This is in contrast to the K+-selective filter of KcsA, which recognizes a dehydrated K+ ion. Our results further revealed a cation-binding site on the periplasmic side, which regulate channel opening and prevents conduction of near-cognate cations.
机译:镁是活细胞中最丰富的二价阳离子,对几种生物学过程至关重要。 MgtE是分布在生活所有领域的Mg 2 + 通道,有助于维持细胞Mg 2 + 的体内稳态。在这里,我们报告了MgtE跨膜结构域的高分辨率晶体结构,该结构绑定到Mg 2 + ,Mn 2 + 和Ca 2 + 。高分辨率的Mg 2 + 结合晶体结构清楚地显示了其选择性滤光片中水合的Mg 2 + 离子。基于这些结构和生化分析,我们提出了一种MgtE的阳离子选择性机理,其中完全水合的Mg 2 + 离子的水合壳的几何结构可以被MgtE中的侧链羧酸盐基团识别。选择性过滤器。这与KcsA的K + 选择性过滤器形成对比,后者可以识别出脱水的K + 离子。我们的结果进一步揭示了周质侧的阳离子结合位点,该位点调节通道的开放并阻止近同源阳离子的传导。

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