Department of Cell Biology, Yale University, New Haven, CT 06520.
Department of Molecular Biophysics and Biochemistry, Yale University, New Haven, CT 06520
Proc Natl Acad Sci U S A. 2022 Feb 15;119(7). doi: 10.1073/pnas.2121259119.
How can exactly six SNARE complexes be assembled under each synaptic vesicle? Here we report cryo-EM crystal structures of the core domain of Munc13, the key chaperone that initiates SNAREpin assembly. The functional core of Munc13, consisting of C1-C2B-MUN-C2C (Munc13C) spontaneously crystallizes between phosphatidylserine-rich bilayers in two distinct conformations, each in a radically different oligomeric state. In the open conformation (state 1), Munc13C forms upright trimers that link the two bilayers, separating them by ∼21 nm. In the closed conformation, six copies of Munc13C interact to form a lateral hexamer elevated ∼14 nm above the bilayer. Open and closed conformations differ only by a rigid body rotation around a flexible hinge, which when performed cooperatively assembles Munc13 into a lateral hexamer (state 2) in which the key SNARE assembly-activating site of Munc13 is autoinhibited by its neighbor. We propose that each Munc13 in the lateral hexamer ultimately assembles a single SNAREpin, explaining how only and exactly six SNARE complexes are templated. We suggest that state 1 and state 2 may represent two successive states in the synaptic vesicle supply chain leading to "primed" ready-release vesicles in which SNAREpins are clamped and ready to release (state 3).
六个 SNARE 复合物究竟是如何在每个突触小泡下组装的?在这里,我们报告了 Munc13 核心结构域的冷冻电镜晶体结构,Munc13 是启动 SNAREpin 组装的关键伴侣蛋白。Munc13 的功能核心由 C1-C2B-MUN-C2C(Munc13C)组成,在富含磷脂酰丝氨酸的双层膜之间自发地以两种不同的构象结晶,每种构象都处于截然不同的寡聚状态。在开放构象(状态 1)中,Munc13C 形成直立三聚体,连接两个双层膜,将它们分隔开约 21nm。在封闭构象中,六个 Munc13C 拷贝相互作用形成一个侧向六聚体,比双层膜高出约 14nm。开放和封闭构象仅通过围绕柔性铰链的刚体旋转而有所不同,当协同进行时,Munc13 组装成侧向六聚体(状态 2),其中 Munc13 的关键 SNARE 组装激活位点被其相邻物自动抑制。我们提出,侧向六聚体中的每个 Munc13 最终组装一个 SNAREpin,解释了为什么只有和恰好六个 SNARE 复合物被模板化。我们建议,状态 1 和状态 2 可能代表突触小泡供应链中的两个连续状态,导致“启动”准备释放的小泡,其中 SNAREpins 被夹住并准备释放(状态 3)。