Title
ATP-dependent force generation and membrane scission by ESCRT-III and Vps4
Date Issued
21 December 2018
Access level
open access
Resource Type
journal article
Author(s)
Schöneberg J.
Pavlin M.R.
Yan S.
Righini M.
Lee I.H.
Carlson L.A.
Bahrami A.H.
Goldman D.H.
Ren X.
Hummer G.
Hurley J.H.
University of California
Publisher(s)
American Association for the Advancement of Science
Abstract
The endosomal sorting complexes required for transport (ESCRTs) catalyze reverse-topology scission from the inner face of membrane necks in HIV budding, multivesicular endosome biogenesis, cytokinesis, and other pathways. We encapsulated ESCRT-III subunits Snf7, Vps24, and Vps2 and the AAA+ ATPase (adenosine triphosphatase) Vps4 in giant vesicles from which membrane nanotubes reflecting the correct topology of scission could be pulled. Upon ATP release by photo-uncaging, this system generated forces within the nanotubes that led to membrane scission in a manner dependent upon Vps4 catalytic activity and Vps4 coupling to the ESCRT-III proteins. Imaging of scission revealed Snf7 and Vps4 puncta within nanotubes whose presence followed ATP release, correlated with force generation and nanotube constriction, and preceded scission. These observations directly verify long-standing predictions that ATP-hydrolyzing assemblies of ESCRT-III and Vps4 sever membranes.
Start page
1423
End page
1428
Volume
362
Issue
6421
Language
English
OCDE Knowledge area
Métodos de investigación bioquímica
Biología
Scopus EID
2-s2.0-85058811123
PubMed ID
Source
Science
ISSN of the container
00368075
DOI of the container
10.1126/science.aat1839
Sources of information:
Directorio de Producción Científica
Scopus