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Steric interference from intrinsically disordered regions controls dynamin-related protein 1 self-assembly during mitochondrial fission

机译:来自内在无序区域的立体干扰控制线粒体裂变过程中的动力相关蛋白1自组装。

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摘要

The self-assembling, mechanoenzymatic dynamin superfamily GTPase, dynamin-related protein 1 (Drp1), catalyzes mitochondrial and peroxisomal fission. Distinct intrinsically disordered regions (IDRs) in Drp1 substitute for the canonical pleckstrin homology (PH) domain and proline-rich domain (PRD) of prototypical dynamin, which cooperatively regulate endocytic vesicle scission. Whether the Drp1 IDRs function analogously to the corresponding dynamin domains however remains unknown. We show that an IDR unique to the Drp1 GTPase (G) domain, the ‘extended 80-loop’, albeit dissimilar in location, structure, and mechanism, functions akin to the dynamin PRD by enabling stable Drp1 mitochondrial recruitment and by suppressing Drp1 cooperative GTPase activity in the absence of specific partner-protein interactions. Correspondingly, we find that another IDR, the Drp1 variable domain (VD), in conjunction with the conserved stalk L1N loop, functions akin to the dynamin PH domain; first, in an ‘auto-inhibitory’ capacity that restricts Drp1 activity through a long-range steric inhibition of helical inter-rung G-domain dimerization, and second, as a ‘fulcrum’ for Drp1 self-assembly in the proper helical register. We show that the Drp1 VD is necessary and sufficient for specific Drp1-phospholipid interactions. We further demonstrate that the membrane-dependent VD conformational rearrangement essential for the alleviation of Drp1 auto-inhibition is contingent upon the basal GTP hydrolysis-dependent generation of Drp1 dimers from oligomers in solution. IDRs thus conformationally couple the enzymatic and membrane activities of Drp1 toward membrane fission.
机译:自组装的机械酶动力超家族GTPase,动力相关蛋白1(Drp1),催化线粒体和过氧化物酶体分裂。 Drp1中不同的固有无序区(IDR)替代了原型动力蛋白的经典pleckstrin同源性(PH)域和富含脯氨酸的域(PRD),从而协同调节内吞性囊泡分裂。 Drp1 IDRs是否类似于相应的dynamin域功能仍然是未知的。我们显示,Drp1 GTPase(G)域独特的IDR,“延伸的80环”,尽管在位置,结构和机制上不同,但通过启用稳定的Drp1线粒体募集并抑制Drp1合作,功能类似于动态发电机PRD。在没有特定伴侣蛋白相互作用的情况下,GTPase活性。相应地,我们发现另一个IDR,Drp1可变域(VD),与保守的茎L1N回路结合,起着类似于发电机动力学PH域的作用。首先,具有“自动抑制”功能,可通过对螺旋行间G域二聚体的远距离空间抑制来限制Drp1的活性;其次,可作为Drp1在适当的螺旋寄存器中自组装的“支点”。我们表明,Drp1 VD是必要的,并且对于特定的Drp1-磷脂相互作用是足够的。我们进一步证明,缓解Drp1自动抑制必不可少的膜依赖性VD构象重排取决于基础GTP水解依赖性的低聚物中Drp1二聚体的生成。因此,IDR在构象上使Drp1的酶和膜活性趋向于膜裂变。

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