Diacylglycerol-dependent Hexamers of the SNARE-assembling Chaperone Munc13-1 Cooperatively Bind Vesicles
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Munc13-1 is essential for vesicle docking and fusion at the active zone of synapses. Here, we report that Munc13-1 self-assembles into molecular clusters within diacylglycerol-rich microdomains present in phospholipid bilayers. Although the copy number of Munc13-1 molecules in these clusters has a broad distribution, a systematic Poisson analysis shows that this is most likely the result of two molecular species: monomers and mainly hexameric oligomers. Each oligomer is able to capture one vesicle independently. Hexamers have also been observed in crystals of Munc13-1 that form between opposed phospholipid bilayers [K. Grushin, R. V. Kalyana Sundaram, C. V. Sindelar, J. E. Rothman, , e2121259119 (2022)]. Mutations targeting the contacts stabilizing the crystallographic hexagons also disrupt the isolated hexamers, suggesting they are identical. Additionally, these mutations also convert vesicle binding from a cooperative to progressive mode. Our study provides an independent approach showing that Munc13-1 can form mainly hexamers on lipid bilayers each capable of vesicle capture.
Li F, Coleman J, Redondo-Morata L, Kalyana Sundaram R, Stroeva E, Rothman J Commun Biol. 2024; 7(1):1608.
PMID: 39627539 PMC: 11615320. DOI: 10.1038/s42003-024-07317-9.
Kalyana Sundaram R, Chatterjee A, Bera M, Grushin K, Panda A, Li F bioRxiv. 2023; .
PMID: 37333317 PMC: 10274626. DOI: 10.1101/2023.06.05.543781.