Mierzwa Beata E, Chiaruttini Nicolas, Redondo-Morata Lorena, von Filseck Joachim Moser, König Julia, Larios Jorge, Poser Ina, Müller-Reichert Thomas, Scheuring Simon, Roux Aurélien, Gerlich Daniel W
Institute of Molecular Biotechnology of the Austrian Academy of Sciences (IMBA), Vienna Biocenter (VBC), AT-1030 Vienna, Austria.
Department of Biochemistry, University of Geneva, CH-1211 Geneva, Switzerland.
Nat Cell Biol. 2017 Jul;19(7):787-798. doi: 10.1038/ncb3559. Epub 2017 Jun 12.
The endosomal sorting complex required for transport (ESCRT)-III mediates membrane fission in fundamental cellular processes, including cytokinesis. ESCRT-III is thought to form persistent filaments that over time increase their curvature to constrict membranes. Unexpectedly, we found that ESCRT-III at the midbody of human cells rapidly turns over subunits with cytoplasmic pools while gradually forming larger assemblies. ESCRT-III turnover depended on the ATPase VPS4, which accumulated at the midbody simultaneously with ESCRT-III subunits, and was required for assembly of functional ESCRT-III structures. In vitro, the Vps2/Vps24 subunits of ESCRT-III formed side-by-side filaments with Snf7 and inhibited further polymerization, but the growth inhibition was alleviated by the addition of Vps4 and ATP. High-speed atomic force microscopy further revealed highly dynamic arrays of growing and shrinking ESCRT-III spirals in the presence of Vps4. Continuous ESCRT-III remodelling by subunit turnover might facilitate shape adaptions to variable membrane geometries, with broad implications for diverse cellular processes.
转运所需的内体分选复合体(ESCRT)-III在包括胞质分裂在内的基本细胞过程中介导膜裂变。ESCRT-III被认为会形成持续的细丝,随着时间的推移,其曲率增加以收缩膜。出乎意料的是,我们发现人类细胞中体处的ESCRT-III会迅速与细胞质池中的亚基进行周转,同时逐渐形成更大的组装体。ESCRT-III的周转依赖于ATP酶VPS4,VPS4与ESCRT-III亚基同时在中体处积累,并且是功能性ESCRT-III结构组装所必需的。在体外,ESCRT-III的Vps2/Vps24亚基与Snf7形成并排的细丝并抑制进一步的聚合,但通过添加Vps4和ATP可缓解生长抑制。高速原子力显微镜进一步揭示了在Vps4存在下ESCRT-III螺旋体生长和收缩的高度动态阵列。通过亚基周转对ESCRT-III进行持续重塑可能有助于形状适应可变的膜几何形状,这对多种细胞过程具有广泛的意义。