Liu Xiaoxia, Seven Alpay Burak, Xu Junjie, Esser Victoria, Su Lijing, Ma Cong, Rizo Josep
Department of Biophysics, University of Texas Southwestern Medical Center, Dallas, Texas, USA.
Department of Biochemistry, University of Texas Southwestern Medical Center, Dallas, Texas, USA.
Nat Protoc. 2017 Sep;12(9):2014-2028. doi: 10.1038/nprot.2017.068. Epub 2017 Aug 31.
This protocol describes reconstitution assays to study how the neurotransmitter release machinery triggers Ca-dependent synaptic vesicle fusion. The assays monitor fusion between proteoliposomes containing the synaptic vesicle SNARE synaptobrevin (with or without the Ca sensor synaptotagmin-1) and proteoliposomes initially containing the plasma membrane SNAREs syntaxin-1 and soluble NSF attachment protein (SNAP)-25. Lipid mixing (from fluorescence de-quenching of Marina-Blue-labeled lipids) and content mixing (from development of fluorescence resonance energy transfer (FRET) between phycoerythrin-biotin (PhycoE-Biotin) and Cy5-streptavidin trapped in the two proteoliposome populations) are measured simultaneously to ensure that true, nonleaky membrane fusion is monitored. This protocol is based on a method developed to study yeast vacuolar fusion. In contrast to other protocols used to study the release machinery, this assay incorporates N-ethylmaleimide sensitive factor (NSF) and α-SNAP, which disassemble syntaxin-1 and SNAP-25 heterodimers. As a result, fusion requires Munc18-1, which binds to the released syntaxin-1, and Munc13-1, which, together with Munc18-1, orchestrates SNARE complex assembly. The protocol can be readily adapted to investigation of other types of intracellular membrane fusion by using appropriate alternative proteins. Total time required for one round of the assay is 4 d.
本方案描述了用于研究神经递质释放机制如何触发钙依赖性突触小泡融合的重组分析方法。这些分析监测含有突触小泡SNARE蛋白突触融合蛋白(有或没有钙传感器突触结合蛋白-1)的蛋白脂质体与最初含有质膜SNARE蛋白 syntaxin-1和可溶性 NSF 附着蛋白(SNAP)-25 的蛋白脂质体之间的融合。同时测量脂质混合(通过Marina-Blue标记脂质的荧光去淬灭)和内容物混合(通过藻红蛋白-生物素(PhycoE-Biotin)与被困在两个蛋白脂质体群体中的Cy5-链霉亲和素之间的荧光共振能量转移(FRET)的发展),以确保监测到真正的、无泄漏的膜融合。本方案基于一种用于研究酵母液泡融合的方法开发。与用于研究释放机制的其他方案不同,该分析纳入了N-乙基马来酰亚胺敏感因子(NSF)和α-SNAP,它们可拆解 syntaxin-1和SNAP-25异二聚体。因此,融合需要与释放的 syntaxin-1结合的Munc18-1,以及与Munc18-1一起协调SNARE复合体组装的Munc13-1。通过使用适当的替代蛋白,该方案可很容易地适用于研究其他类型的细胞内膜融合。一轮分析所需的总时间为4天。