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Processive ATP-driven Substrate Disassembly by the N-Ethylmaleimide-sensitive Factor (NSF) Molecular Machine

SNARE proteins promote membrane fusion by forming a four-stranded parallel helical bundle that brings the membranes into close proximity. Post-fusion, the complex is disassembled by an AAA+ ATPase called N-ethylmaleimide-sensitive factor (NSF). We present evidence that NSF uses a processive unwindin...

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Autores principales: Cipriano, Daniel J., Jung, Jaemyeong, Vivona, Sandro, Fenn, Timothy D., Brunger, Axel T., Bryant, Zev
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4520572/
https://www.ncbi.nlm.nih.gov/pubmed/23775070
http://dx.doi.org/10.1074/jbc.M113.476705
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author Cipriano, Daniel J.
Jung, Jaemyeong
Vivona, Sandro
Fenn, Timothy D.
Brunger, Axel T.
Bryant, Zev
author_facet Cipriano, Daniel J.
Jung, Jaemyeong
Vivona, Sandro
Fenn, Timothy D.
Brunger, Axel T.
Bryant, Zev
author_sort Cipriano, Daniel J.
collection PubMed
description SNARE proteins promote membrane fusion by forming a four-stranded parallel helical bundle that brings the membranes into close proximity. Post-fusion, the complex is disassembled by an AAA+ ATPase called N-ethylmaleimide-sensitive factor (NSF). We present evidence that NSF uses a processive unwinding mechanism to disassemble SNARE proteins. Using a real-time disassembly assay based on fluorescence dequenching, we correlate NSF-driven disassembly rates with the SNARE-activated ATPase activity of NSF. Neuronal SNAREs activate the ATPase rate of NSF by ∼26-fold. One SNARE complex takes an average of ∼5 s to disassemble in a process that consumes ∼50 ATP. Investigations of substrate requirements show that NSF is capable of disassembling a truncated SNARE substrate consisting of only the core SNARE domain, but not an unrelated four-stranded coiled-coil. NSF can also disassemble an engineered double-length SNARE complex, suggesting a processive unwinding mechanism. We further investigated processivity using single-turnover experiments, which show that SNAREs can be unwound in a single encounter with NSF. We propose a processive helicase-like mechanism for NSF in which ∼1 residue is unwound for every hydrolyzed ATP molecule.
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spelling pubmed-45205722015-07-31 Processive ATP-driven Substrate Disassembly by the N-Ethylmaleimide-sensitive Factor (NSF) Molecular Machine Cipriano, Daniel J. Jung, Jaemyeong Vivona, Sandro Fenn, Timothy D. Brunger, Axel T. Bryant, Zev J Biol Chem Membrane Biology SNARE proteins promote membrane fusion by forming a four-stranded parallel helical bundle that brings the membranes into close proximity. Post-fusion, the complex is disassembled by an AAA+ ATPase called N-ethylmaleimide-sensitive factor (NSF). We present evidence that NSF uses a processive unwinding mechanism to disassemble SNARE proteins. Using a real-time disassembly assay based on fluorescence dequenching, we correlate NSF-driven disassembly rates with the SNARE-activated ATPase activity of NSF. Neuronal SNAREs activate the ATPase rate of NSF by ∼26-fold. One SNARE complex takes an average of ∼5 s to disassemble in a process that consumes ∼50 ATP. Investigations of substrate requirements show that NSF is capable of disassembling a truncated SNARE substrate consisting of only the core SNARE domain, but not an unrelated four-stranded coiled-coil. NSF can also disassemble an engineered double-length SNARE complex, suggesting a processive unwinding mechanism. We further investigated processivity using single-turnover experiments, which show that SNAREs can be unwound in a single encounter with NSF. We propose a processive helicase-like mechanism for NSF in which ∼1 residue is unwound for every hydrolyzed ATP molecule. American Society for Biochemistry and Molecular Biology 2013-08-09 2013-06-17 /pmc/articles/PMC4520572/ /pubmed/23775070 http://dx.doi.org/10.1074/jbc.M113.476705 Text en © 2013 by The American Society for Biochemistry and Molecular Biology, Inc. Author's Choice—Final version full access. Creative Commons Attribution Unported License (http://creativecommons.org/licenses/by/3.0/) applies to Author Choice Articles
spellingShingle Membrane Biology
Cipriano, Daniel J.
Jung, Jaemyeong
Vivona, Sandro
Fenn, Timothy D.
Brunger, Axel T.
Bryant, Zev
Processive ATP-driven Substrate Disassembly by the N-Ethylmaleimide-sensitive Factor (NSF) Molecular Machine
title Processive ATP-driven Substrate Disassembly by the N-Ethylmaleimide-sensitive Factor (NSF) Molecular Machine
title_full Processive ATP-driven Substrate Disassembly by the N-Ethylmaleimide-sensitive Factor (NSF) Molecular Machine
title_fullStr Processive ATP-driven Substrate Disassembly by the N-Ethylmaleimide-sensitive Factor (NSF) Molecular Machine
title_full_unstemmed Processive ATP-driven Substrate Disassembly by the N-Ethylmaleimide-sensitive Factor (NSF) Molecular Machine
title_short Processive ATP-driven Substrate Disassembly by the N-Ethylmaleimide-sensitive Factor (NSF) Molecular Machine
title_sort processive atp-driven substrate disassembly by the n-ethylmaleimide-sensitive factor (nsf) molecular machine
topic Membrane Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4520572/
https://www.ncbi.nlm.nih.gov/pubmed/23775070
http://dx.doi.org/10.1074/jbc.M113.476705
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