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首页> 外文期刊>Molecular cell >Coincident Phosphatidic Acid Interaction Restrains Drp1 in Mitochondrial Division
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Coincident Phosphatidic Acid Interaction Restrains Drp1 in Mitochondrial Division

机译:巧合的磷酸相互作用限制线粒体中的Drp1。

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摘要

Mitochondria divide to control their size, distribution, turnover, and function. Dynamin-related protein 1 (Drp1) is a critical mechanochemical GTPase that drives constriction during mitochondrial division. It is generally believed that mitochondrial division is regulated during recruitment of Drp1 to mitochondria and its oligomerization into a division apparatus. Here, we report an unforeseen mechanism that regulates mitochondrial division by coincident interactions of Drp1 with the head group and acyl chains of phospholipids. Drp1 recognizes the head group of phosphatidic acid (PA) and two saturated acyl chains of another phospholipid by penetrating into the hydrophobic core of the membrane. The dual phospholipid interactions restrain Drp1 via inhibition of oligomerization-stimulated GTP hydrolysis that promotes membrane constriction. Moreover, a PA-producing phospholipase, MitoPLD, binds Drp1, creating a PA-rich microenvironment in the vicinity of a division apparatus. Thus, PA controls the activation of Drp1 after the formation of the division apparatus.
机译:线粒体分裂以控制其大小,分布,周转和功能。动力蛋白相关蛋白1(Drp1)是一种重要的机械化学GTP酶,在线粒体分裂过程中驱动收缩。通常认为线粒体分裂在Drp1募集到线粒体及其寡聚化成分裂装置的过程中受到调节。在这里,我们报告了不可预见的机制,通过Drp1与磷脂的头部和酰基链的同时相互作用来调节线粒体的分裂。 Drp1通过渗透到膜的疏水核中来识别磷脂酸(PA)的头基和另一个磷脂的两个饱和酰基链。双重磷脂相互作用通过抑制促进膜收缩的低聚刺激的GTP水解来抑制Drp1。此外,产生PA的磷脂酶MitoPLD与Drp1结合,在分离装置附近形成富含PA的微环境。因此,PA在分割装置形成之后控制Drp1的激活。

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