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Rabphilin-3A 通过与 SNAP25 的相互作用,负向调节神经肽的释放。

Rabphilin-3A negatively regulates neuropeptide release, through its SNAP25 interaction.

机构信息

Department of Functional Genomics, Faculty of Exact Science, Center for Neurogenomics and Cognitive Research, Vrije Universiteit Amsterdam and Vrije Universiteit Medical Center, Amsterdam, Netherlands.

Department of Clinical Genetics, Center for Neurogenomics and Cognitive Research, Amsterdam Neuroscience, Vrije Universiteit Medical Center, Amsterdam, Netherlands.

出版信息

Elife. 2024 Oct 16;13:RP95371. doi: 10.7554/eLife.95371.

Abstract

Neuropeptides and neurotrophins are stored in and released from dense core vesicles (DCVs). While DCVs and synaptic vesicles (SVs) share fundamental SNARE/SM proteins for exocytosis, a detailed understanding of DCV exocytosis remains elusive. We recently identified the RAB3-RIM1 pathway to be essential for DCV, but not SV exocytosis, highlighting a significant distinction between the SV and DCV secretory pathways. Whether RIM1 is the only RAB3 effector that is essential for DCV exocytosis is currently unknown. In this study, we show that rabphilin-3A (RPH3A), a known downstream effector of RAB3A, is a negative regulator of DCV exocytosis. Using live-cell imaging at single-vesicle resolution with RPH3A deficient hippocampal mouse neurons, we show that DCV exocytosis increased threefold in the absence of RPH3A. RAB3A-binding deficient RPH3A lost its punctate distribution, but still restored DCV exocytosis to WT levels when re-expressed. SNAP25-binding deficient RPH3A did not rescue DCV exocytosis. In addition, we show that RPH3A did not travel with DCVs, but remained stationary at presynapses. RPH3A null neurons also had longer neurites, which was partly restored when ablating all regulated secretion with tetanus neurotoxin. Taken together, these results show that RPH3A negatively regulates DCV exocytosis, potentially also affecting neuron size. Furthermore, RAB3A interaction is required for the synaptic enrichment of RPH3A, but not for limiting DCV exocytosis. Instead, the interaction of RPH3A with SNAP25 is relevant for inhibiting DCV exocytosis.

摘要

神经肽和神经营养因子储存在致密核心囊泡 (DCV) 中,并从其中释放。虽然 DCV 和突触小泡 (SV) 在外排过程中共享基本的 SNARE/SM 蛋白,但对 DCV 胞吐作用的详细了解仍难以捉摸。我们最近发现 RAB3-RIM1 途径对 DCV 但不是 SV 胞吐作用是必不可少的,这突显了 SV 和 DCV 分泌途径之间的显著区别。目前尚不清楚 RIM1 是否是唯一对 DCV 胞吐作用必不可少的 RAB3 效应物。在这项研究中,我们表明 rabphilin-3A (RPH3A),一种已知的 RAB3A 下游效应物,是 DCV 胞吐作用的负调节剂。使用缺乏 RPH3A 的海马鼠神经元的活细胞成像以达到单个囊泡分辨率,我们表明在没有 RPH3A 的情况下 DCV 胞吐作用增加了三倍。缺乏 RAB3A 结合能力的 RPH3A 失去了点状分布,但当重新表达时仍能将 DCV 胞吐作用恢复到 WT 水平。缺乏 SNAP25 结合能力的 RPH3A 不能挽救 DCV 胞吐作用。此外,我们表明 RPH3A 不会随 DCV 一起移动,而是留在突触前。RPH3A 缺失神经元的神经突也更长,当用破伤风神经毒素消除所有调节性分泌时,这种情况部分得到恢复。总之,这些结果表明 RPH3A 负调节 DCV 胞吐作用,可能也会影响神经元大小。此外,RAB3A 相互作用对于 RPH3A 的突触富集是必需的,但对于限制 DCV 胞吐作用不是必需的。相反,RPH3A 与 SNAP25 的相互作用对于抑制 DCV 胞吐作用是相关的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ce4c/11483123/e459ee526bbe/elife-95371-fig1.jpg

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