Malintan Nancy T, Nguyen Tam H, Han Liping, Latham Catherine F, Osborne Shona L, Wen Peter J, Lim Siew Joo Tiffany, Sugita Shuzo, Collins Brett M, Meunier Frederic A
Queensland Brain Institute and School of Biomedical Sciences, University of Queensland, Brisbane, Queensland 4072, Australia.
J Biol Chem. 2009 Aug 7;284(32):21637-46. doi: 10.1074/jbc.M109.013508. Epub 2009 May 29.
Neuronal communication relies on the fusion of neurotransmitter-containing vesicles with the plasma membrane. The soluble N-ethylmaleimide-sensitive fusion protein attachment protein receptor (SNARE) proteins initiate membrane fusion through the formation of the SNARE complex, a process tightly regulated by Sec1/Munc18-1 (SM) proteins. The emerging trend is that SM proteins promote SNARE-mediated membrane fusion by binding to a Syntaxin N-terminal motif. Here we report that mutations in the hydrophobic pocket of Munc18-1 (F115E and E132A), predicted to disrupt the N-terminal Sx1a interaction have a modest effect on binding to Sx1a in its free state, but abolish binding to the SNARE complex. Overexpression of the Munc18-1 mutant in PC12 cells lacking Munc18-1 rescues both neuroexocytosis and the plasma membrane localization of Syntaxin. However, total internal reflection fluorescence microscopy analysis reveals that expression of a Munc18-1 double mutant reduces the rate of vesicle fusion, an effect only detectable at the onset of stimulation. The Munc18-1 hydrophobic pocket is therefore critical for SNARE complex binding. However, mutations abrogating this interaction have a limited impact on Ca(2+)-dependent exocytosis in PC12 cells.
神经元通讯依赖于含神经递质的囊泡与质膜的融合。可溶性N - 乙基马来酰亚胺敏感融合蛋白附着蛋白受体(SNARE)蛋白通过形成SNARE复合体启动膜融合,这一过程受Sec1/Munc18 - 1(SM)蛋白严格调控。新出现的趋势是,SM蛋白通过与Syntaxin N端基序结合来促进SNARE介导的膜融合。在此我们报告,Munc18 - 1疏水口袋中的突变(F115E和E132A),预计会破坏其与Syntaxin 1a(Sx1a)N端的相互作用,对其与游离状态下的Sx1a结合有适度影响,但会消除与SNARE复合体的结合。在缺乏Munc18 - 1的PC12细胞中过表达Munc18 - 1突变体可挽救神经胞吐作用以及Syntaxin的质膜定位。然而,全内反射荧光显微镜分析显示,Munc18 - 1双突变体的表达降低了囊泡融合速率,这种效应仅在刺激开始时可检测到。因此,Munc18 - 1疏水口袋对于SNARE复合体结合至关重要。然而,消除这种相互作用的突变对PC12细胞中钙依赖的胞吐作用影响有限。