Macdonald Patrick J, Stepanyants Natalia, Mehrotra Niharika, Mears Jason A, Qi Xin, Sesaki Hiromi, Ramachandran Rajesh
Department of Physiology and Biophysics, Case Western Reserve University School of Medicine, Cleveland, OH 44106.
Department of Pharmacology, Case Western Reserve University School of Medicine, Cleveland, OH 44106Center for Mitochondrial Diseases, Case Western Reserve University School of Medicine, Cleveland, OH 44106.
Mol Biol Cell. 2014 Jun 15;25(12):1905-15. doi: 10.1091/mbc.E14-02-0728. Epub 2014 Apr 30.
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.
GTP酶动力相关蛋白1(Drp1)催化线粒体分裂,但其机制仍知之甚少。许多归因于Drp1在线粒体膜裂变中作用机制的情况与内吞小泡分裂中典型动力蛋白的情况相似。然而,与动力蛋白不同的是,尚未确定Drp1在线粒体上激活的脂质靶点。此外,Drp1的寡聚化特性也尚未明确。我们发现线粒体特异性脂质心磷脂是Drp1 GTP酶活性以及膜成管的有效刺激物。我们进一步确定,在生理条件下,Drp1以两种形态不同的聚合物形式共存,一种在溶液中结合核苷酸,另一种与膜相关,它们通过二聚体组装中间体达到平衡。通过两个在相反方向上改变Drp1聚合平衡的突变C300A和C505A,我们证明二聚体而非多聚体在体外和体内都能增强Drp1的重新组装和重组,以进行线粒体膜重塑。