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镁离子选择性离子通道的结构与调控

The structure and regulation of magnesium selective ion channels.

作者信息

Payandeh Jian, Pfoh Roland, Pai Emil F

机构信息

Department of Structural Biology, Genentech Inc., 1 DNA Way, South San Francisco, CA 94080, USA.

出版信息

Biochim Biophys Acta. 2013 Nov;1828(11):2778-92. doi: 10.1016/j.bbamem.2013.08.002. Epub 2013 Aug 15.

Abstract

The magnesium ion (Mg(2+)) is the most abundant divalent cation within cells. In man, Mg(2+)-deficiency is associated with diseases affecting the heart, muscle, bone, immune, and nervous systems. Despite its impact on human health, little is known about the molecular mechanisms that regulate magnesium transport and storage. Complete structural information on eukaryotic Mg(2+)-transport proteins is currently lacking due to associated technical challenges. The prokaryotic MgtE and CorA magnesium transport systems have recently succumbed to structure determination by X-ray crystallography, providing first views of these ubiquitous and essential Mg(2+)-channels. MgtE and CorA are unique among known membrane protein structures, each revealing a novel protein fold containing distinct arrangements of ten transmembrane-spanning α-helices. Structural and functional analyses have established that Mg(2+)-selectivity in MgtE and CorA occurs through distinct mechanisms. Conserved acidic side-chains appear to form the selectivity filter in MgtE, whereas conserved asparagines coordinate hydrated Mg(2+)-ions within the selectivity filter of CorA. Common structural themes have also emerged whereby MgtE and CorA sense and respond to physiologically relevant, intracellular Mg(2+)-levels through dedicated regulatory domains. Within these domains, multiple primary and secondary Mg(2+)-binding sites serve to staple these ion channels into their respective closed conformations, implying that Mg(2+)-transport is well guarded and very tightly regulated. The MgtE and CorA proteins represent valuable structural templates to better understand the related eukaryotic SLC41 and Mrs2-Alr1 magnesium channels. Herein, we review the structure, function and regulation of MgtE and CorA and consider these unique proteins within the expanding universe of ion channel and transporter structural biology.

摘要

镁离子(Mg(2+))是细胞内含量最丰富的二价阳离子。在人类中,镁缺乏与影响心脏、肌肉、骨骼、免疫和神经系统的疾病有关。尽管镁对人类健康有影响,但关于调节镁运输和储存的分子机制却知之甚少。由于相关技术挑战,目前缺乏真核生物镁运输蛋白的完整结构信息。原核生物的MgtE和CorA镁运输系统最近已通过X射线晶体学确定了结构,首次展示了这些普遍存在且必不可少的镁通道。MgtE和CorA在已知的膜蛋白结构中是独特的,每种都揭示了一种新颖的蛋白质折叠,包含十个跨膜α螺旋的不同排列。结构和功能分析已确定,MgtE和CorA中的镁选择性通过不同机制发生。保守的酸性侧链似乎在MgtE中形成选择性过滤器,而保守的天冬酰胺在CorA的选择性过滤器内配位水合镁离子。还出现了共同的结构主题,即MgtE和CorA通过专门的调节域感知并响应生理相关的细胞内镁水平。在这些域内,多个一级和二级镁结合位点用于将这些离子通道固定在各自的关闭构象中,这意味着镁运输受到良好保护且受到非常严格的调节。MgtE和CorA蛋白是有价值的结构模板,有助于更好地理解相关的真核生物SLC41和Mrs2-Alr1镁通道。在此,我们综述了MgtE和CorA的结构、功能和调节,并在不断扩展的离子通道和转运蛋白结构生物学领域中考虑这些独特的蛋白质。

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