4.8 Article

Recruitment dynamics of ESCRT-III and Vps4 to endosomes and implications for reverse membrane budding

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ELIFE
卷 6, 期 -, 页码 -

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ELIFE SCIENCES PUBLICATIONS LTD
DOI: 10.7554/eLife.31652

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  1. Deutsche Forschungsgemeinschaft [SFB 1129 Z2]
  2. National Institutes of Health [GM075252]
  3. Biogen Idec
  4. Ionis Pharmaceuticals
  5. Austrian Science Fund [Y444-B12, P30263, W1101-B18]
  6. Austrian Marshall Plan Foundation
  7. Austrian Science Fund (FWF) [P 30263, Y 444] Funding Source: researchfish
  8. Austrian Science Fund (FWF) [P30263, Y444] Funding Source: Austrian Science Fund (FWF)

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The ESCRT machinery mediates reverse membrane scission. By quantitative fluorescence lattice light-sheet microscopy, we have shown that ESCRT-III subunits polymerize rapidly on yeast endosomes, together with the recruitment of at least two Vps4 hexamers. During their 3-45 s lifetimes, the ESCRT-III assemblies accumulated 75-200 Snf7 and 15-50 Vps24 molecules. Productive budding events required at least two additional Vps4 hexamers. Membrane budding was associated with continuous, stochastic exchange of Vps4 and ESCRT-III components, rather than steady growth of fixed assemblies, and depended on Vps4 ATPase activity. An all-or-none step led to final release of ESCRT-III and Vps4. Tomographic electron microscopy demonstrated that acute disruption of Vps4 recruitment stalled membrane budding. We propose a model in which multiple Vps4 hexamers (four or more) draw together several ESCRT-III filaments. This process induces cargo crowding and inward membrane buckling, followed by constriction of the nascent bud neck and ultimately ILV generation by vesicle fission.

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