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真核生物镁离子通道Mrs2的封闭和开放结构揭示了自配体门控调节机制。

Closed and open structures of the eukaryotic magnesium channel Mrs2 reveal the auto-ligand-gating regulation mechanism.

作者信息

Li Ping, Liu Shiyan, Wallerstein Johan, Villones Rhiza Lyne E, Huang Peng, Lindkvist-Petersson Karin, Meloni Gabriele, Lu Kefeng, Steen Jensen Kristine, Liin Sara I, Gourdon Pontus

机构信息

Department of Experimental Medical Science, Lund University, Lund, Sweden.

Department of Neurosurgery, State Key Laboratory of Biotherapy, West China Hospital, Sichuan University, Chengdu, China.

出版信息

Nat Struct Mol Biol. 2025 Mar;32(3):491-501. doi: 10.1038/s41594-024-01432-1. Epub 2024 Nov 28.

Abstract

The CorA/Mrs2 family of pentameric proteins are cardinal for the influx of Mg across cellular membranes, importing the cation to mitochondria in eukaryotes. Yet, the conducting and regulation mechanisms of permeation remain elusive, particularly for the eukaryotic Mrs2 members. Here, we report closed and open Mrs2 cryo-electron microscopy structures, accompanied by functional characterization. Mg flux is permitted by a narrow pore, gated by methionine and arginine residues in the closed state. Transition between the conformations is orchestrated by two pairs of conserved sensor-serving Mg-binding sites in the mitochondrial matrix lumen, located in between monomers. At lower levels of Mg, these ions are stripped, permitting an alternative, symmetrical shape, maintained by the RDLR motif that replaces one of the sensor site pairs in the open conformation. Thus, our findings collectively establish the molecular basis for selective Mg influx of Mrs2 and an auto-ligand-gating regulation mechanism.

摘要

五聚体蛋白的CorA/Mrs2家族对于镁离子跨细胞膜内流至关重要,在真核生物中负责将阳离子导入线粒体。然而,其通透的传导和调节机制仍然难以捉摸,尤其是对于真核生物的Mrs2成员。在此,我们报告了闭合和开放状态下的Mrs2冷冻电镜结构,并进行了功能表征。镁离子通量由一个狭窄的孔道允许,该孔道在闭合状态下由甲硫氨酸和精氨酸残基门控。构象之间的转变由位于单体之间的线粒体基质腔中的两对保守的充当传感器的镁结合位点精心编排。在较低的镁水平下,这些离子被剥离,允许一种由RDLR基序维持的替代对称形状,该基序在开放构象中取代了一对传感器位点。因此,我们的研究结果共同确立了Mrs2选择性镁内流的分子基础和一种自配体门控调节机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eb45/11919701/730a8ee53355/41594_2024_1432_Fig1_HTML.jpg

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