Merz Alexey J, Wickner William T
Dept. of Biochemistry, 7200 Vail Bldg., Dartmouth Medical School, Hanover, NH 03755-3844, USA.
J Cell Biol. 2004 Jan 19;164(2):195-206. doi: 10.1083/jcb.200310105.
Ca2+ transients trigger many SNARE-dependent membrane fusion events. The homotypic fusion of yeast vacuoles occurs after a release of lumenal Ca2+. Here, we show that trans-SNARE interactions promote the release of Ca2+ from the vacuole lumen. Ypt7p-GTP, the Sec1p/Munc18-protein Vps33p, and Rho GTPases, all of which function during docking, are required for Ca2+ release. Inhibitors of SNARE function prevent Ca2+ release. Recombinant Vam7p, a soluble Q-SNARE, stimulates Ca2+ release. Vacuoles lacking either of two complementary SNAREs, Vam3p or Nyv1p, fail to release Ca2+ upon tethering. Mixing these two vacuole populations together allows Vam3p and Nyv1p to interact in trans and rescues Ca2+ release. Sec17/18p promote sustained Ca2+ release by recycling SNAREs (and perhaps other limiting factors), but are not required at the release step itself. We conclude that trans-SNARE assembly events during docking promote Ca2+ release from the vacuole lumen.
钙离子瞬变引发许多依赖SNARE的膜融合事件。酵母液泡的同型融合在腔隙钙离子释放后发生。在此,我们表明跨SNARE相互作用促进钙离子从液泡腔释放。Ypt7p-GTP、Sec1p/Munc18蛋白Vps33p以及Rho GTP酶,它们在对接过程中均发挥作用,是钙离子释放所必需的。SNARE功能抑制剂可阻止钙离子释放。重组Vam7p,一种可溶性Q-SNARE,可刺激钙离子释放。缺乏两种互补SNARE之一Vam3p或Nyv1p的液泡,在拴系时无法释放钙离子。将这两种液泡群体混合在一起可使Vam3p和Nyv1p进行反式相互作用并挽救钙离子释放。Sec17/18p通过循环利用SNARE(可能还有其他限制因素)促进持续的钙离子释放,但在释放步骤本身并非必需。我们得出结论,对接过程中的跨SNARE组装事件促进钙离子从液泡腔释放。