Holderith Noemi, Aldahabi Mohammad, Nusser Zoltan
Institute of Experimental Medicine, Eotvos Lorand Research Network, Budapest, Hungary.
János Szentágothai School of Neurosciences, Semmelweis University, Budapest, Hungary.
Front Synaptic Neurosci. 2022 Feb 10;13:773209. doi: 10.3389/fnsyn.2021.773209. eCollection 2021.
Selective distribution of proteins in presynaptic active zones (AZs) is a prerequisite for generating postsynaptic target cell type-specific differences in presynaptic vesicle release probability (P) and short-term plasticity, a characteristic feature of cortical pyramidal cells (PCs). In the hippocampus of rodents, somatostatin and mGluR1α expressing interneurons (mGluR1α+ INs) receive small, facilitating excitatory postsynaptic currents (EPSCs) from PCs and express Elfn1 that trans-synaptically recruits mGluR7 into the presynaptic AZ of PC axons. Here we show that Elfn1 also has a role in the selective recruitment of Munc13-2, a synaptic vesicle priming and docking protein, to PC AZs that innervate mGluR1α+ INs. In Elfn1 knock-out mice, unitary EPSCs (uEPSCs) in mGluR1α+ INs have threefold larger amplitudes with less pronounced short-term facilitation, which might be the consequence of the loss of either mGluR7 or Munc13-2 or both. Conditional genetic deletion of Munc13-2 from CA1 PCs results in the loss of Munc13-2, but not mGluR7 from the AZs, and has no effect on the amplitude of uEPSCs and leaves the characteristic short-term facilitation intact at PC to mGluR1α+ IN connection. Our results demonstrate that Munc13-1 alone is capable of imposing low P at PC to mGluR1α+ IN synapses and Munc13-2 has yet an unknown role in this synapse.
蛋白质在突触前活性区(AZs)的选择性分布是在突触前囊泡释放概率(P)和短期可塑性方面产生突触后靶细胞类型特异性差异的先决条件,这是皮质锥体细胞(PCs)的一个特征。在啮齿动物的海马体中,表达生长抑素和mGluR1α的中间神经元(mGluR1α+ INs)从PCs接收小的、易化性兴奋性突触后电流(EPSCs),并表达Elfn1,Elfn1通过跨突触将mGluR7招募到PC轴突的突触前AZ中。在这里,我们表明Elfn1在将Munc13-2(一种突触囊泡启动和对接蛋白)选择性招募到支配mGluR1α+ INs的PC AZs中也起作用。在Elfn1基因敲除小鼠中,mGluR1α+ INs中的单突触EPSCs(uEPSCs)振幅大三倍,短期易化不明显,这可能是mGluR7或Munc13-2或两者缺失的结果。从CA1 PCs中条件性基因缺失Munc13-2会导致Munc13-2从AZs中缺失,但不会导致mGluR7缺失,并且对uEPSCs的振幅没有影响,并且在PC与mGluR1α+ IN的连接中保留了特征性的短期易化。我们的结果表明,单独的Munc13-1能够在PC与mGluR1α+ IN突触处施加低P,而Munc13-2在这种突触中具有未知作用。