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首页> 外文期刊>Molecular biology of the cell >A Highlights from MBoC Selection: A dimeric equilibrium intermediate nucleates Drp1 reassembly on mitochondrial membranes for fission
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A Highlights from MBoC Selection: A dimeric equilibrium intermediate nucleates Drp1 reassembly on mitochondrial membranes for fission

机译:MBoC选择的亮点:二聚体平衡中间核在线粒体膜上重组Drp1进行裂变

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The GTPase dynamin-related protein 1 (Drp1) catalyzes mitochondrial division, but the mechanisms remain poorly understood. Much of what is attributed to Drp1’s mechanism of action in mitochondrial membrane fission parallels that of prototypical dynamin in endocytic vesicle scission. Unlike the case for dynamin, however, no lipid target for Drp1 activation at the mitochondria has been identified. In addition, the oligomerization properties of Drp1 have not been well established. We show that the mitochondria-specific lipid cardiolipin is a potent stimulator of Drp1 GTPase activity, as well as of membrane tubulation. We establish further that under physiological conditions, Drp1 coexists as two morphologically distinct polymeric species, one nucleotide bound in solution and the other membrane associated, which equilibrate via a dimeric assembly intermediate. With two mutations, C300A and C505A, that shift Drp1 polymerization equilibria in opposite directions, we demonstrate that dimers, and not multimers, potentiate the reassembly and reorganization of Drp1 for mitochondrial membrane remodeling both in vitro and in vivo.
机译:GTPase动力相关蛋白1(Drp1)催化线粒体分裂,但其机制仍知之甚少。大部分归因于Drp1在线粒体膜裂变中的作用机制与在囊泡内切开中典型的动力蛋白相似。与动力蛋白不同,但是,尚未发现线粒体激活Drp1的脂质靶标。此外,Drp1的低聚特性还没有很好地建立。我们显示,线粒体特异性脂质心磷脂是Drp1 GTPase活性以及膜管形成的有效刺激剂。我们进一步确定,在生理条件下,Drp1共存为两种形态上截然不同的聚合物种类,一个核苷酸结合在溶液中,另一个与膜结合,它们通过二聚体组装中间体平衡。有两个突变,C300A和C505A,使Drp1聚合平衡朝相反的方向移动,我们证明了二聚体而非多聚体可增强Drp1的重组和重组,从而在体内和体外对线粒体膜进行重塑。

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