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Proceedings of the National Academy of Sciences of the United States of America|August 1, 2007
Assays of vacuole fusion resolve the stages of docking, lipid mixing, and content mixingYoungsoo Jun, William WicknerElife|October 26, 2021
Fusion of tethered membranes can be driven by Sec18/NSF and Sec17/αSNAP without HOPSHongki Song, William T WicknerMolecular Biology of the Cell|May 14, 2010
HOPS initiates vacuole docking by tethering membranes before trans-SNARE complex assemblyChristopher M Hickey, William WicknerThe Journal of Biological Chemistry|March 10, 2007
Distinct targeting and fusion functions of the PX and SNARE domains of yeast vacuolar Vam7pRutilio A Fratti, William WicknerBiorxiv : the Preprint Server for Biology|November 28, 2024
Membrane fusion reactions limited by defective SNARE zippering or stiff lipid fatty acyl composition have distinct requirements for Sec17, Sec18, and adenine nucleotideKarina Lopes, Amy Orr, William WicknerMolecular Biology of the Cell|May 7, 2025
Sec18 ATP hydrolysis selectively releases Sec17 from trans-SNARE complexes, inhibiting membrane fusionKarina Lopes, Amy Orr, William WicknerProceedings of the National Academy of Sciences of the United States of America|August 19, 2007
Excess vacuolar SNAREs drive lysis and Rab bypass fusionVincent J Starai, Youngsoo Jun, William WicknerThe Journal of Biological Chemistry|April 24, 2009
The major role of the Rab Ypt7p in vacuole fusion is supporting HOPS membrane associationChristopher M Hickey, Christopher Stroupe, William WicknerThe Journal of Biological Chemistry|October 16, 2004
Diacylglycerol and its formation by phospholipase C regulate Rab- and SNARE-dependent yeast vacuole fusionYoungsoo Jun, Rutilio A Fratti, William WicknerThe Journal of Cell Biology|August 15, 2002
Remodeling of organelle-bound actin is required for yeast vacuole fusionGary Eitzen, Li Wang, Naomi Thorngren, et al.Pageof 6