Sequential analysis of trans-SNARE formation in intracellular membrane fusion.


Autoria(s): Alpadi K.; Kulkarni A.; Comte V.; Reinhardt M.; Schmidt A.; Namjoshi S.; Mayer A.; Peters C.
Data(s)

2012

Resumo

SNARE complexes are required for membrane fusion in the endomembrane system. They contain coiled-coil bundles of four helices, three (Q(a), Q(b), and Q(c)) from target (t)-SNAREs and one (R) from the vesicular (v)-SNARE. NSF/Sec18 disrupts these cis-SNARE complexes, allowing reassembly of their subunits into trans-SNARE complexes and subsequent fusion. Studying these reactions in native yeast vacuoles, we found that NSF/Sec18 activates the vacuolar cis-SNARE complex by selectively displacing the vacuolar Q(a) SNARE, leaving behind a Q(bc)R subcomplex. This subcomplex serves as an acceptor for a Q(a) SNARE from the opposite membrane, leading to Q(a)-Q(bc)R trans-complexes. Activity tests of vacuoles with diagnostic distributions of inactivating mutations over the two fusion partners confirm that this distribution accounts for a major share of the fusion activity. The persistence of the Q(bc)R cis-complex and the formation of the Q(a)-Q(bc)R trans-complex are both sensitive to the Rab-GTPase inhibitor, GDI, and to mutations in the vacuolar tether complex, HOPS (HOmotypic fusion and vacuolar Protein Sorting complex). This suggests that the vacuolar Rab-GTPase, Ypt7, and HOPS restrict cis-SNARE disassembly and thereby bias trans-SNARE assembly into a preferred topology.

Identificador

https://serval.unil.ch/?id=serval:BIB_4C9C2AB141A9

isbn:1545-7885 (Electronic)

pmid:22272185

doi:10.1371/journal.pbio.1001243

isiid:000300420400013

http://my.unil.ch/serval/document/BIB_4C9C2AB141A9.pdf

http://nbn-resolving.org/urn/resolver.pl?urn=urn:nbn:ch:serval-BIB_4C9C2AB141A91

Idioma(s)

en

Direitos

info:eu-repo/semantics/openAccess

Fonte

PLoS Biology, vol. 10, no. 1, pp. e1001243

Palavras-Chave #Alleles; Intracellular Membranes/metabolism; Kinetics; Membrane Fusion; Models, Biological; Multiprotein Complexes/metabolism; Mutation/genetics; Oxidation-Reduction; Protein Binding; Protein Stability; SNARE Proteins/metabolism; Saccharomyces cerevisiae/metabolism; Saccharomyces cerevisiae Proteins/metabolism; Vacuoles/metabolism; rab GTP-Binding Proteins/metabolism
Tipo

info:eu-repo/semantics/article

article