Dense core vesicles (DCVs) transport and release various neuropeptides and neurotrophins that control diverse brain functions, but the DCV secretory pathway remains poorly understood. Here, we tested a prediction emerging from invertebrate studies about the crucial role of the intracellular trafficking GTPase Rab10, by assessing DCV exocytosis at single-cell resolution upon acute Rab10 depletion in mature mouse hippocampal neurons, to circumvent potential confounding effects of Rab10's established role in neurite outgrowth. We observed a significant inhibition of DCV exocytosis in Rab10-depleted neurons, whereas synaptic vesicle exocytosis was unaffected. However, rather than a direct involvement in DCV trafficking, this effect was attributed to two ER-dependent processes, ER-regulated intracellular Ca(2+) dynamics, and protein synthesis. Gene Ontology analysis of differentially expressed proteins upon Rab10 depletion identified substantial alterations in synaptic and ER/ribosomal proteins, including the Ca(2+) pump SERCA2. In addition, ER morphology and dynamics were altered, ER Ca(2+) levels were depleted, and Ca(2+) homeostasis was impaired in Rab10-depleted neurons. However, Ca(2+) entry using a Ca(2+) ionophore still triggered less DCV exocytosis. Instead, leucine supplementation, which enhances protein synthesis, largely rescued DCV exocytosis deficiency. We conclude that Rab10 is required for neuropeptide release by maintaining Ca(2+) dynamics and regulating protein synthesis. Furthermore, DCV exocytosis appeared more dependent on (acute) protein synthesis than synaptic vesicle exocytosis.
Rab10 regulates neuropeptide release by maintaining Ca(2+) homeostasis and protein synthesis.
Rab10 通过维持 Ca(2+) 稳态和蛋白质合成来调节神经肽的释放
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作者:Dong Jian, Chen Mian, van Weering Jan R T, Li Ka Wan, Smit August B, Toonen Ruud F, Verhage Matthijs
| 期刊: | Elife | 影响因子: | 6.400 |
| 时间: | 2025 | 起止号: | 2025 Apr 2; 13:RP94930 |
| doi: | 10.7554/eLife.94930 | 研究方向: | 神经科学 |
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