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The Journal of Biological Chemistry|October 13, 2010
Phosphoinositides function asymmetrically for membrane fusion, promoting tethering and 3Q-SNARE subcomplex assemblyHao Xu, William WicknerThe Journal of Biological Chemistry|July 21, 2006
Bem1p is a positive regulator of the homotypic fusion of yeast vacuolesHao Xu, William WicknerThe EMBO Journal|November 17, 2007
Sec18p and Vam7p remodel trans-SNARE complexes to permit a lipid-anchored R-SNARE to support yeast vacuole fusionYoungsoo Jun, Hao Xu, Naomi Thorngren, et al.The EMBO Journal|May 18, 2010
HOPS prevents the disassembly of trans-SNARE complexes by Sec17p/Sec18p during membrane fusionHao Xu, Youngsoo Jun, James Thompson, et al.The EMBO Journal|July 25, 2008
Reconstituted membrane fusion requires regulatory lipids, SNAREs and synergistic SNARE chaperonesJoji Mima, Christopher M Hickey, Hao Xu, et al.Annual Review of Cell and Developmental Biology|June 5, 2010
Membrane fusion: five lipids, four SNAREs, three chaperones, two nucleotides, and a Rab, all dancing in a ring on yeast vacuolesWilliam WicknerMolecular Biology of the Cell|July 8, 2016
Improved reconstitution of yeast vacuole fusion with physiological SNARE concentrations reveals an asymmetric Rab(GTP) requirementMichael Zick, William WicknerProceedings of the National Academy of Sciences of the United States of America|May 16, 2003
Vam10p defines a Sec18p-independent step of priming that allows yeast vacuole tetheringMasashi Kato, William WicknerMolecular Biology of the Cell|June 23, 2017
A short region upstream of the yeast vacuolar Qa-SNARE heptad-repeats promotes membrane fusion through enhanced SNARE complex assemblyHongki Song, William WicknerPageof 389