Huber Stefan T, Mostafavi Siavash, Mortensen Simon A, Sachse Carsten
European Molecular Biology Laboratory (EMBL), Structural and Computational Biology Unit, Meyerhofstraße 1, 69117 Heidelberg, Germany.
Ernst-Ruska Centre for Microscopy and Spectroscopy with Electrons (ER-C-3/Structural Biology), Forschungszentrum Jülich, 52425 Jülich, Germany.
Sci Adv. 2020 Aug 19;6(34):eaba4897. doi: 10.1126/sciadv.aba4897. eCollection 2020 Aug.
ESCRT-III proteins mediate a range of cellular membrane remodeling activities such as multivesicular body biogenesis, cytokinesis, and viral release. Critical to these processes is the assembly of ESCRT-III subunits into polymeric structures. In this study, we determined the cryo-EM structure of a helical assembly of Vps24 at 3.2-Å resolution and found that Vps24 adopts an elongated open conformation. Vps24 forms a domain-swapped dimer extended into protofilaments that associate into a double-stranded apolar filament. We demonstrate that, upon binding negatively charged lipids, Vps24 homopolymer filaments undergo partial disassembly into shorter filament fragments and oligomers. Upon the addition of Vps24, Vps2, and Snf7, liposomes are deformed into neck and tubular structures by an ESCRT-III heteropolymer coat. The filamentous Vps24 homopolymer assembly structure and interaction studies reveal how Vps24 could introduce unique geometric properties to mixed-type ESCRT-III heteropolymers and contribute to the process of membrane scission events.
ESCRT-III蛋白介导一系列细胞膜重塑活动,如多泡体生物发生、胞质分裂和病毒释放。这些过程的关键是ESCRT-III亚基组装成聚合物结构。在本研究中,我们以3.2埃分辨率确定了Vps24螺旋组装体的冷冻电镜结构,发现Vps24采用拉长的开放构象。Vps24形成一个结构域交换二聚体,延伸成原丝,原丝结合形成双链非极性细丝。我们证明,在结合带负电荷的脂质后,Vps24同聚物细丝会部分解聚成较短的细丝片段和寡聚物。加入Vps24、Vps2和Snf7后,脂质体被ESCRT-III异聚物外壳变形为颈部和管状结构。丝状Vps24同聚物组装结构和相互作用研究揭示了Vps24如何向混合型ESCRT-III异聚物引入独特的几何特性,并有助于膜分裂事件的过程。