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变构调节 Drp1 机械酶组装和线粒体分裂

Allosteric modulation of Drp1 mechanoenzyme assembly and mitochondrial fission by the variable domain.

机构信息

Department of Pharmacology, The University of Iowa, Iowa City, Iowa 52242, USA.

出版信息

J Biol Chem. 2012 Mar 30;287(14):10990-1001. doi: 10.1074/jbc.M112.342105. Epub 2012 Feb 13.

Abstract

The mechanoenzyme dynamin-related protein 1 (Drp1) hydrolyzes GTP to power mitochondrial fission, a process required for organelle biogenesis, quality control, transport, and apoptosis. The pleckstrin homology domain of dynamin is essential for targeting to and severing of lipid tubules, but the function of the corresponding variable domain (VD, or insert B) of Drp1 is unknown. We replaced the VD of Drp1 with a panel of linker sequences of varying length and secondary structure composition and found that the VD is dispensable for mitochondrial recruitment, association with the Drp1-anchoring protein Mff (mitochondrial fission factor), and basal and protonophore-induced mitochondrial fragmentation. Indeed, several ΔVD mutants constitutively localized to the outer mitochondrial membrane (OMM) and fragmented mitochondria more efficiently than wild-type Drp1. Consistent with an autoinhibitory role of the VD, we identified Arg-376 in the Drp1 stalk domain as necessary for Mff interaction, assembly into spirals, and mitochondrial fission. Switching the length of N- and C-terminal α-helical segments in the VD-replacing linker converted Drp1 from constitutively active and OMM-localized to inactive and cytosolic. Other hypoactive ΔVD mutants formed stable and characteristically shaped aggregates, including extended filaments. Phosphorylation of a PKA site bordering the VD disassembled the filamentous ΔVD mutant and accelerated cytosolic diffusion of full-length Drp1. We propose a model for regulation of Drp1-dependent mitochondrial fission, in which posttranslational modifications in or near the VD alter the conformation of a membrane-proximal oligomerization interface to influence Drp1 assembly rate and/or geometry. This in turn modulates Arg-376-dependent OMM targeting of Drp1 via multivalent interactions with Mff.

摘要

机械酶相关蛋白 1(Drp1)水解 GTP 以提供动力使线粒体分裂,这是细胞器发生、质量控制、运输和凋亡所必需的过程。GTP 酶 dynamin 的 Pleckstrin 同源结构域对于靶向和切断脂质小管是必不可少的,但 Drp1 的相应可变结构域(VD 或插入 B)的功能尚不清楚。我们用一系列不同长度和二级结构组成的连接序列替换 Drp1 的 VD,发现 VD 对于线粒体募集、与 Drp1 锚定蛋白 Mff(线粒体分裂因子)的关联以及基础和质子载体诱导的线粒体片段化是可有可无的。事实上,几个 ΔVD 突变体持续定位于外线粒体膜(OMM)并比野生型 Drp1 更有效地片段化线粒体。与 VD 具有自动抑制作用一致,我们确定 Drp1 柄部结构域中的 Arg-376 对于 Mff 相互作用、螺旋组装和线粒体分裂是必需的。在取代 VD 的连接体中的 N-和 C-末端 α-螺旋段的长度进行切换,将 Drp1 从组成型活性和 OMM 定位转换为非活性和细胞质。其他低活性 ΔVD 突变体形成稳定且具有特征形状的聚集体,包括延伸的纤维。边界 VD 的 PKA 位点的磷酸化使丝状 ΔVD 突变体解体,并加速全长 Drp1 的细胞质扩散。我们提出了一种调节 Drp1 依赖性线粒体分裂的模型,其中 VD 内或附近的翻译后修饰改变了靠近膜的寡聚化界面的构象,从而影响 Drp1 组装速率和/或几何形状。这反过来又通过与 Mff 的多价相互作用来调节 Drp1 对 OMM 的 Arg-376 依赖性靶向。

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