表达mGluR1α的海马锥体细胞突触前活跃区Munc13-2的选择性富集

IF 2.8 4区 医学 Q2 NEUROSCIENCES Frontiers in Synaptic Neuroscience Pub Date : 2022-02-10 DOI:10.3389/fnsyn.2021.773209
Noémi Holderith, Mohammad Aldahabi, Z. Nusser
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引用次数: 3

摘要

蛋白质在突触前活动区(AZs)的选择性分布是在突触后囊泡释放概率(Pv)和短期可塑性(皮层锥体细胞(PC)的特征)方面产生突触后靶细胞类型特异性差异的先决条件。在啮齿类动物的海马中,生长抑素和表达mGluR1α的中间神经元(mGlu1α+INs)从PC接收小的、促进兴奋性突触后电流(EPSC),并表达Elfn1,该Elfn1跨突触募集mGluR7进入PC轴突的突触前AZ。在这里,我们发现Elfn1在Munc13-2(一种突触小泡启动和对接蛋白)选择性募集到支配mGluR1α+in的PC-AZ中也有作用。在Elfn1敲除小鼠中,mGluR1α+INs中的单一EPSCs(uEPSCs)具有三倍大的振幅,短期促进作用不太明显,这可能是mGluR7或Munc13-2或两者缺失的结果。从CA1 PC中条件性遗传缺失Munc13-2导致Munc13-2的缺失,但不导致AZ中mGluR7的缺失,并且对uEPSCs的幅度没有影响,并且在PC到mGluR1α+in连接处保持特征性的短期促进作用不变。我们的结果表明,单独的Munc13-1能够在PC处对mGluR1α+IN突触施加低Pv,并且Munc13-2在该突触中的作用尚不清楚。
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Selective Enrichment of Munc13-2 in Presynaptic Active Zones of Hippocampal Pyramidal Cells That Innervate mGluR1α Expressing Interneurons
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 (Pv) 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 Pv at PC to mGluR1α+ IN synapses and Munc13-2 has yet an unknown role in this synapse.
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来源期刊
CiteScore
7.10
自引率
2.70%
发文量
74
审稿时长
14 weeks
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