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Architecture of the Mitochondrial Calcium Uniporter

机译:线粒体钙Uniporter的体系结构

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摘要

Mitochondria from multiple, eukaryotic clades uptake and buffer large amounts of calcium (Ca2+) via an inner membrane transporter called the uniporter. Early studies demonstrated that this transport requires a mitochondrial membrane potential and that the uniporter is itself Ca2+ activated, and blocked by ruthenium red or Ru360. Later, electrophysiological studies demonstrated that the uniporter is an ion channel with remarkably high conductance and selectivity. Ca2+ entry into mitochondria is also known to activate the TCA cycle and appears to be critical for matching ATP production in mitochondria with its cytosolic demand. MCU (mitochondrial calcium uniporter) is the pore forming and Ca2+ conducting subunit of the uniporter, but its primary sequence does not resemble any calcium channel known to date. Here, we report the structure of the core region of MCU, determined using nuclear magnetic resonance (NMR) and electron microscopy (EM). MCU is a homo-oligomer with the second transmembrane helix forming a hydrophilic pore across the membrane. The channel assembly represents a new solution of ion channel architecture and is stabilized by a coiled coil motif protruding in the mitochondrial matrix. The critical DxxE motif forms the pore entrance featuring two carboxylate rings, which appear to be the selectivity filter based on the ring dimensions and functional mutagenesis. To our knowledge, this is one of the largest structures characterized by NMR, which provides a structural blueprint for understanding the function of this channel.
机译:来自多个真核进化枝的线粒体通过称为单向转运蛋白的内膜转运蛋白吸收并缓冲大量钙(Ca 2 + )。早期研究表明,这种转运需要线粒体膜电位,并且单向转运蛋白本身被Ca 2 + 激活,并被钌红或Ru360 阻断。后来,电生理研究证明,单向转运蛋白是离子通道,具有很高的电导率和选择性 。 Ca 2 + 进入线粒体也可以激活TCA周期,对于线粒体中ATP的产生与其胞质需求量的匹配而言,显得至关重要。 。 MCU(线粒体钙单向转运蛋白)是单向转运蛋白的孔形成和Ca 2 + 传导亚基,但其主要序列与迄今已知的任何钙通道均不相似。在这里,我们报告使用核磁共振(NMR)和电子显微镜(EM)确定的MCU核心区域的结构。 MCU是一种均聚物,第二个跨膜螺旋形成跨膜的亲水孔。通道组件代表了离子通道体系结构的新解决方案,并通过在线粒体基质中突出的卷曲螺旋基序来稳定。关键的DxxE基序形成了具有两个羧酸盐环的孔入口,这似乎是基于环尺寸和功能诱变的选择性过滤器。据我们所知,这是NMR表征的最大结构之一,它为理解该通道的功能提供了结构蓝图。

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