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通过核心蛋白机器的完全重建揭示了二酰基甘油在突触囊泡引发和释放中的作用。

Roles for diacylglycerol in synaptic vesicle priming and release revealed by complete reconstitution of core protein machinery.

机构信息

Nanobiology Institute, Yale University School of Medicine, New Haven, CT 06520.

Department of Cell Biology, Yale University School of Medicine, New Haven, CT 06520.

出版信息

Proc Natl Acad Sci U S A. 2023 Aug 22;120(34):e2309516120. doi: 10.1073/pnas.2309516120. Epub 2023 Aug 17.

Abstract

Here, we introduce the full functional reconstitution of genetically validated core protein machinery (SNAREs, Munc13, Munc18, Synaptotagmin, and Complexin) for synaptic vesicle priming and release in a geometry that enables detailed characterization of the fate of docked vesicles both before and after release is triggered with Ca. Using this setup, we identify new roles for diacylglycerol (DAG) in regulating vesicle priming and Ca-triggered release involving the SNARE assembly chaperone Munc13. We find that low concentrations of DAG profoundly accelerate the rate of Ca-dependent release, and high concentrations reduce clamping and permit extensive spontaneous release. As expected, DAG also increases the number of docked, release-ready vesicles. Dynamic single-molecule imaging of Complexin binding to release-ready vesicles directly establishes that DAG accelerates the rate of SNAREpin assembly mediated by chaperones, Munc13 and Munc18. The selective effects of physiologically validated mutations confirmed that the Munc18-Syntaxin-VAMP2 "template" complex is a functional intermediate in the production of primed, release-ready vesicles, which requires the coordinated action of Munc13 and Munc18.

摘要

在这里,我们为突触囊泡的引发和释放引入了经过基因验证的核心蛋白机制(SNAREs、Munc13、Munc18、Synaptotagmin 和 Complexin)的完整功能重建,其几何形状能够详细描述在 Ca 触发释放之前和之后停靠囊泡的命运。使用这种设置,我们确定了二酰基甘油 (DAG) 在调节囊泡引发和 Ca 触发释放中的新作用,涉及 SNARE 组装伴侣 Munc13。我们发现低浓度的 DAG 可显著加速 Ca 依赖性释放的速率,而高浓度的 DAG 可降低夹断并允许广泛的自发释放。正如预期的那样,DAG 还增加了停靠的、准备释放的囊泡数量。对释放准备好的囊泡上的 Complexin 结合的动态单分子成像直接证实,DAG 加速了由伴侣蛋白 Munc13 和 Munc18 介导的 SNAREpin 组装的速率。经过生理验证的突变的选择性影响证实,Munc18-Syntaxin-VAMP2“模板”复合物是产生引发的、准备释放的囊泡的功能性中间产物,这需要 Munc13 和 Munc18 的协调作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7648/10450444/c1656f62ff17/pnas.2309516120fig01.jpg

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