Department of Biochemistry, Brandeis University, Waltham, United States.
Department of Physiology and Biophysics, University of Colorado Anschutz Medical Campus, Aurora, United States.
Elife. 2019 Jan 15;8:e41112. doi: 10.7554/eLife.41112.
The mitochondrial calcium uniporter is a Ca channel that regulates intracellular Ca signaling, oxidative phosphorylation, and apoptosis. It contains the pore-forming MCU protein, which possesses a DIME sequence thought to form a Ca selectivity filter, and also regulatory EMRE, MICU1, and MICU2 subunits. To properly carry out physiological functions, the uniporter must stay closed in resting conditions, becoming open only when stimulated by intracellular Ca signals. This Ca-dependent activation, known to be mediated by MICU subunits, is not well understood. Here, we demonstrate that the DIME-aspartate mediates a Ca-modulated electrostatic interaction with MICU1, forming an MICU1 contact interface with a nearby Ser residue at the cytoplasmic entrance of the MCU pore. A mutagenesis screen of MICU1 identifies two highly-conserved Arg residues that might contact the DIME-Asp. Perturbing MCU-MICU1 interactions elicits unregulated, constitutive Ca flux into mitochondria. These results indicate that MICU1 confers Ca-dependent gating of the uniporter by blocking/unblocking MCU.
线粒体钙单向转运蛋白是一种 Ca 通道,可调节细胞内 Ca 信号转导、氧化磷酸化和细胞凋亡。它包含形成 Ca 选择性过滤器的 pore-forming MCU 蛋白,以及调节 EMRE、MICU1 和 MICU2 亚基。为了正常发挥生理功能,单向转运蛋白在静息状态下必须保持关闭,只有在受到细胞内 Ca 信号刺激时才会打开。这种 Ca 依赖性激活被认为是由 MICU 亚基介导的,但目前还不太清楚其具体机制。在这里,我们证明 DIME-天冬氨酸介导了一种 Ca 调节的静电相互作用,与 MICU1 形成了一个 MICU1 接触界面,该界面与 MCU 孔细胞质入口处的附近 Ser 残基相连。对 MICU1 的突变筛选确定了两个高度保守的 Arg 残基,它们可能与 DIME-Asp 相互作用。干扰 MCU-MICU1 相互作用会引起不受调节的、组成型的 Ca 流入线粒体。这些结果表明,MICU1 通过阻断/解阻 MCU 来赋予单向转运蛋白 Ca 依赖性门控。