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Molecular Biology of the Cell|November 19, 2025
Functional assembly of the Qc-SNARE with Sec18 and Sec17 on membranesAmy Orr, Karina Lopes, Jerry O'Dwyer, et al.
Molecular Biology of the Cell|October 30, 2024
After their membrane assembly, Sec18 (NSF) and Sec17 (SNAP) promote membrane fusionHongki Song, Karina Lopes, Amy Orr, et al.
The EMBO Journal|April 8, 2006
Purification of active HOPS complex reveals its affinities for phosphoinositides and the SNARE Vam7pChristopher Stroupe, Kevin M Collins, Rutilio A Fratti, et al.
The Journal of Cell Biology|February 5, 2003
Hierarchy of protein assembly at the vertex ring domain for yeast vacuole docking and fusionLi Wang, Alexey J Merz, Kevin M Collins, et al.
Molecular Biology of the Cell|June 14, 2023
Efficient fusion requires a membrane anchor on the vacuolar Qa-SNAREWilliam Wickner, Karina Lopes, Hongki Song, et al.
The Journal of Biological Chemistry|March 2, 2005
Ion regulation of homotypic vacuole fusion in Saccharomyces cerevisiaeVincent J Starai, Naomi Thorngren, Rutilio A Fratti, et al.
Cell|February 21, 2002
Vacuole fusion at a ring of vertex docking sites leaves membrane fragments within the organelleLi Wang, E Scott Seeley, William Wickner, et al.
Molecular Biology of the Cell|March 22, 2002
Genomic analysis of homotypic vacuole fusionE Scott Seeley, Masashi Kato, Nathan Margolis, et al.
Elife|July 19, 2017
Sec17/Sec18 act twice, enhancing membrane fusion and then disassembling cis-SNARE complexesHongki Song, Amy Orr, Mengtong Duan, et al.
The Journal of Biological Chemistry|April 3, 2007
Stringent 3Q.1R composition of the SNARE 0-layer can be bypassed for fusion by compensatory SNARE mutation or by lipid bilayer modificationRutilio A Fratti, Kevin M Collins, Christopher M Hickey, et al.
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