Key Laboratory of Molecular Biophysics of the Ministry of Education, College of Life Science and Technology, Huazhong University of Science and Technology, Wuhan, China.
FEBS J. 2022 Oct;289(20):6367-6384. doi: 10.1111/febs.16528. Epub 2022 May 23.
Synaptic exocytosis requires efficient SNARE complex assembly that is precisely regulated by multiple regulatory proteins. Increasing evidence suggests that Munc18-1 and Munc13-1 protect SNARE complex assembly in a manner resistant to NSF and α-SNAP. However, the protective mechanisms of Munc18-1 and Munc13-1 are not fully understood. Here, by analyzing two pathways of SNARE complex assembly (i.e., the Munc18 - Munc13-dependent pathway and the Munc18 - Munc13-independent pathway), we found that the Munc18 - Munc13-dependent pathway of SNARE complex assembly is resistant to NSF - α-SNAP. In this pathway, Munc18-1 and Munc13-1 each, independently, have protective effects. The protective effect of Munc18-1 relies on the interaction with the C-terminal part of Syb2 during the transition from the Munc18-1/Syx1 complex to the SNARE complex. Moreover, the protective effect of Munc13-1 is most likely attributed to its ability in templating the assembling SNAREs. In addition, we found that the Munc18 - Munc13-dependent pathway opposes the association of α-SNAP with the SNARE bundle, thus explaining how this pathway is resistant to NSF - α-SNAP disassembly. Although the above results were derived from the studies on SNARE complex in solution or in cis-configurations, instead of trans-configurations residing on the opposite membrane, our data could still help to understand the protective mechanism of Munc18-1 and Munc13-1 in SNARE-mediated synaptic exocytosis.
突触胞吐需要有效的 SNARE 复合物组装,而这一过程受到多种调节蛋白的精确调控。越来越多的证据表明,Munc18-1 和 Munc13-1 以一种抵抗 NSF 和 α-SNAP 的方式保护 SNARE 复合物的组装。然而,Munc18-1 和 Munc13-1 的保护机制尚未完全阐明。在这里,通过分析 SNARE 复合物组装的两种途径(即 Munc18-Munc13 依赖性途径和 Munc18-Munc13 非依赖性途径),我们发现 SNARE 复合物组装的 Munc18-Munc13 依赖性途径抵抗 NSF-α-SNAP。在这条途径中,Munc18-1 和 Munc13-1 各自独立地具有保护作用。Munc18-1 的保护作用依赖于其在从 Munc18-1/Syx1 复合物到 SNARE 复合物的转变过程中与 Syb2 的 C 端部分的相互作用。此外,Munc13-1 的保护作用很可能归因于其在组装 SNARE 中的模板作用。此外,我们发现 Munc18-Munc13 依赖性途径阻碍了 α-SNAP 与 SNARE 束的结合,从而解释了该途径如何抵抗 NSF-α-SNAP 的解体。尽管上述结果是从溶液或顺式构型中的 SNARE 复合物研究中得出的,而不是从位于相反膜上的反式构型中得出的,但我们的数据仍然有助于理解 Munc18-1 和 Munc13-1 在 SNARE 介导的突触胞吐中的保护机制。