Using a new assay for membrane fusion between late Golgi/endosomal compartments, we have reconstituted a rapid, robust homotypic fusion reaction between membranes containing Kex2p and Ste13p, two enzymes resident in the yeast trans-Golgi network (TGN). Fusion was temperature, ATP, and cytosol dependent. It was inhibited by dilution, Ca+2 chelation, N-ethylmaleimide, and detergent. Coimmunoisolation confirmed that the reaction resulted in cointegration of the two enzymes into the same bilayer. Antibody inhibition experiments coupled with antigen competition indicated a requirement for soluble NSF attachment protein receptor (SNARE) proteins Tlg1p, Tlg2p, and Vti1p in this reaction. Membrane fusion also required the rab protein Vps21p. Vps21p was sufficient if present on either the Kex2p or Ste13p membranes alone, indicative of an inherent symmetry in the reaction. These results identify roles for a Tlg SNARE complex composed of Tlg1p, Tlg2p, Vti1p, and the rab Vps21p in this previously uncharacterized homotypic TGN fusion reaction.
The Tlg SNARE complex is required for TGN homotypic fusion
J.H. Brickner and J.M. Blanchette contributed equally to this work.
J.H. Brickner's present address is Dept. of Biochemistry and Biophysics, University of California, San Francisco, CA 94143.
Abbreviations used in this paper: DPAP, dipeptidyl aminopeptidase; HA, hemagglutinin; IP, immunoprecipitation; MSS, medium speed supernatant; NEM, N-ethylmaleimide; NSF, NEM-sensitive fusion protein; P200, 200,000 g pellet; PVC, prevacuolar compartment; SNARE, soluble NSF attachment protein receptor; TGN, trans-Golgi network; TLS, trans-Golgi localization signal; TMD, transmembrane domain; t-SNARE, target membrane SNARE; v-SNARE, vesicle SNARE.
Jason H. Brickner, Jennifer M. Blanchette, György Sipos, Robert S. Fuller; The Tlg SNARE complex is required for TGN homotypic fusion . J Cell Biol 10 December 2001; 155 (6): 969–978. doi: https://doi.org/10.1083/jcb.200104093
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