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Molecular 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 WicknerProceedings of the National Academy of Sciences of the United States of America|June 26, 2019
Tethering guides fusion-competent trans-SNARE assemblyHongki Song, William WicknerMolecular Biology of the Cell|February 16, 2022
Fusion with wild-type SNARE domains is controlled by juxtamembrane domains, transmembrane anchors, and Sec17Amy Orr, Hongki Song, William WicknerProceedings of the National Academy of Sciences of the United States of America|March 28, 2020
A Rab prenyl membrane-anchor allows effector recognition to be regulated by guanine nucleotideMiriam Lee, William Wickner, Hongki SongMolecular Biology of the Cell|March 12, 2020
Asymmetric Rab activation of vacuolar HOPS to catalyze SNARE complex assemblyThomas Torng, Hongki Song, William WicknerMolecular 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.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.Elife|July 19, 2017
Sec17/Sec18 act twice, enhancing membrane fusion and then disassembling cis-SNARE complexesHongki Song, Amy Orr, Mengtong Duan, et al.Molecular Biology of the Cell|February 3, 2017
HOPS catalyzes the interdependent assembly of each vacuolar SNARE into a SNARE complexAmy Orr, Hongki Song, Scott F Rusin, 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 WicknerPageof 6