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Sec17 can trigger fusion of trans-SNARE paired membranes without Sec18.
Proc Natl Acad Sci U S A. 2015 May 5;112(18):E2290-7. doi: 10.1073/pnas.1506409112. Epub 2015 Apr 20.
3
Sec17 (α-SNAP) and Sec18 (NSF) restrict membrane fusion to R-SNAREs, Q-SNAREs, and SM proteins from identical compartments.
Proc Natl Acad Sci U S A. 2019 Nov 19;116(47):23573-23581. doi: 10.1073/pnas.1913985116. Epub 2019 Nov 4.
4
Sec18 supports membrane fusion by promoting Sec17 membrane association.
Mol Biol Cell. 2022 Nov 1;33(13):ar127. doi: 10.1091/mbc.E22-07-0274. Epub 2022 Sep 14.
9
Sec18 binds the tethering/SM complex HOPS to engage the Qc-SNARE for membrane fusion.
Mol Biol Cell. 2024 May 1;35(5):ar71. doi: 10.1091/mbc.E24-02-0060. Epub 2024 Mar 27.
10
Fusion with wild-type SNARE domains is controlled by juxtamembrane domains, transmembrane anchors, and Sec17.
Mol Biol Cell. 2022 May 1;33(5):ar38. doi: 10.1091/mbc.E21-11-0583. Epub 2022 Feb 16.

引用本文的文献

1
Model-based inference of a dual role for HOPS in regulating guard cell vacuole fusion.
In Silico Plants. 2024 Aug 30;6(2):diae015. doi: 10.1093/insilicoplants/diae015. eCollection 2024.
3
After their membrane assembly, Sec18 (NSF) and Sec17 (SNAP) promote membrane fusion.
Mol Biol Cell. 2024 Dec 1;35(12):ar150. doi: 10.1091/mbc.E24-10-0439. Epub 2024 Oct 30.
4
Exocyst stimulates multiple steps of exocytic SNARE complex assembly and vesicle fusion.
Nat Struct Mol Biol. 2025 Jan;32(1):150-160. doi: 10.1038/s41594-024-01388-2. Epub 2024 Sep 6.
5
Sec18 binds the tethering/SM complex HOPS to engage the Qc-SNARE for membrane fusion.
Mol Biol Cell. 2024 May 1;35(5):ar71. doi: 10.1091/mbc.E24-02-0060. Epub 2024 Mar 27.
6
Model-based inference of a plant-specific dual role for HOPS in regulating guard cell vacuole fusion.
bioRxiv. 2023 Nov 9:2023.11.07.565947. doi: 10.1101/2023.11.07.565947.
7
Mechanisms of SNARE proteins in membrane fusion.
Nat Rev Mol Cell Biol. 2024 Feb;25(2):101-118. doi: 10.1038/s41580-023-00668-x. Epub 2023 Oct 17.
9
MARCKS Effector Domain, a reversible lipid ligand, illuminates late stages of membrane fusion.
Mol Biol Cell. 2023 Nov 1;34(12):ar123. doi: 10.1091/mbc.E23-06-0228. Epub 2023 Sep 6.
10
Efficient fusion requires a membrane anchor on the vacuolar Qa-SNARE.
Mol Biol Cell. 2023 Aug 1;34(9):ar88. doi: 10.1091/mbc.E23-02-0052. Epub 2023 Jun 14.

本文引用的文献

1
Mechanistic insights into the recycling machine of the SNARE complex.
Nature. 2015 Feb 5;518(7537):61-7. doi: 10.1038/nature14148. Epub 2015 Jan 12.
3
A distinct tethering step is vital for vacuole membrane fusion.
Elife. 2014 Sep 25;3:e03251. doi: 10.7554/eLife.03251.
6
Lipid-anchored SNAREs lacking transmembrane regions fully support membrane fusion during neurotransmitter release.
Neuron. 2013 Oct 16;80(2):470-83. doi: 10.1016/j.neuron.2013.09.010. Epub 2013 Oct 10.
7
The tethering complex HOPS catalyzes assembly of the soluble SNARE Vam7 into fusogenic trans-SNARE complexes.
Mol Biol Cell. 2013 Dec;24(23):3746-53. doi: 10.1091/mbc.E13-07-0419. Epub 2013 Oct 2.
8
Individual vesicle fusion events mediated by lipid-anchored DNA.
Biophys J. 2013 Jul 16;105(2):409-19. doi: 10.1016/j.bpj.2013.05.056.
9
Processive ATP-driven substrate disassembly by the N-ethylmaleimide-sensitive factor (NSF) molecular machine.
J Biol Chem. 2013 Aug 9;288(32):23436-45. doi: 10.1074/jbc.M113.476705. Epub 2013 Jun 17.
10
Phosphatidylserine inhibits and calcium promotes model membrane fusion.
Biophys J. 2012 Nov 7;103(9):1880-9. doi: 10.1016/j.bpj.2012.09.030.

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