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Constriction of the mitochondrial inner compartment is a priming event for mitochondrial division

机译:线粒体内隔室的收缩是线粒体分裂的引发事件

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Mitochondrial division is critical for the maintenance and regulation of mitochondrial function, quality and distribution. This process is controlled by cytosolic actin-based constriction machinery and dynamin-related protein 1 (Drp1) on mitochondrial outer membrane (OMM). Although mitochondrial physiology, including oxidative phosphorylation, is also important for efficient mitochondrial division, morphological alterations of the mitochondrial inner-membrane (IMM) have not been clearly elucidated. Here we report spontaneous and repetitive constriction of mitochondrial inner compartment (CoMIC) associated with subsequent division in neurons. Although CoMIC is potentiated by inhibition of Drp1 and occurs at the potential division spots contacting the endoplasmic reticulum, it appears on IMM independently of OMM. Intra-mitochondrial influx of Ca2+ induces and potentiates CoMIC, and leads to K+-mediated mitochondrial bulging and depolarization. Synergistically, optic atrophy 1 (Opa1) also regulates CoMIC via controlling Mic60-mediated OMM–IMM tethering. Therefore, we propose that CoMIC is a priming event for efficient mitochondrial division.
机译:线粒体划分对于维持和调节线粒体功能,质量和分布至关重要。该方法由基于细胞骨肌动蛋白的收缩机械和发动力学相关蛋白1(DRP1)控制线粒体外膜(OMM)来控制。虽然线粒体生理学,包括氧化磷酸化,对于有效的线粒体分裂也很重要,但没有明确阐明线粒体内膜(IMM)的形态改变。在这里,我们向神经元中的后续分区报告线粒体内隔室(漫画)的自发性和重复收缩。虽然漫画是通过抑制DRP1而激增的,但在接触内质网的潜在分裂点处发生,但它出现在IMM的IMM中。 Ca 2 + 的线粒体中涌入诱导和增强型漫画,并导致K + 介导的线粒体膨胀和去极化。协同效应上,光学萎缩1(OPA1)还通过控制MIC60介导的OMM-IMM系列来调节漫画。因此,我们建议漫画是高效线粒体划分的启动事件。

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