Longfield Shanley F, Gormal Rachel S, Feller Matis, Parutto Pierre, Reingruber Jürgen, Wallis Tristan P, Joensuu Merja, Augustine George J, Martínez-Mármol Ramón, Holcman David, Meunier Frédéric A
Clem Jones Centre for Ageing Dementia Research, Queensland Brain Institute, The University of Queensland, Brisbane, QLD 4072, Australia.
Group of Data Modelling and Computational Biology, IBENS, Ecole Normale Superieure, 75005, Paris, France.
Nat Commun. 2024 Mar 12;15(1):2217. doi: 10.1038/s41467-024-46256-1.
Neurotransmitter release relies on the regulated fusion of synaptic vesicles (SVs) that are tightly packed within the presynaptic bouton of neurons. The mechanism by which SVs are clustered at the presynapse, while preserving their ability to dynamically recycle to support neuronal communication, remains unknown. Synapsin 2a (Syn2a) tetramerization has been suggested as a potential clustering mechanism. Here, we used Dual-pulse sub-diffractional Tracking of Internalised Molecules (DsdTIM) to simultaneously track single SVs from the recycling and the reserve pools, in live hippocampal neurons. The reserve pool displays a lower presynaptic mobility compared to the recycling pool and is also present in the axons. Triple knockout of Synapsin 1-3 genes (SynTKO) increased the mobility of reserve pool SVs. Re-expression of wild-type Syn2a (Syn2a), but not the tetramerization-deficient mutant K337Q (Syn2a), fully rescued these effects. Single-particle tracking revealed that Syn2amEos3.1 exhibited altered activity-dependent presynaptic translocation and nanoclustering. Therefore, Syn2a tetramerization controls its own presynaptic nanoclustering and thereby contributes to the dynamic immobilisation of the SV reserve pool.
神经递质的释放依赖于突触小泡(SVs)的调控性融合,这些突触小泡紧密包裹在神经元的突触前终扣内。突触小泡在突触前聚集的机制,同时又能保持其动态循环以支持神经元通讯的能力,仍然未知。突触结合蛋白2a(Syn2a)的四聚化被认为是一种潜在的聚集机制。在这里,我们使用内化分子双脉冲亚衍射跟踪(DsdTIM)技术,在活的海马神经元中同时跟踪来自循环池和储备池的单个突触小泡。与循环池相比,储备池在突触前的移动性较低,并且也存在于轴突中。突触结合蛋白1-3基因的三联敲除(SynTKO)增加了储备池突触小泡的移动性。野生型Syn2a(Syn2a)的重新表达,而不是四聚化缺陷型突变体K337Q(Syn2a),完全挽救了这些效应。单粒子跟踪显示,Syn2amEos3.1表现出依赖于活动的突触前易位和纳米簇集的改变。因此,Syn2a的四聚化控制其自身的突触前纳米簇集,从而有助于突触小泡储备池的动态固定。