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ELKS controls the pool of readily releasable vesicles at excitatory synapses through its N-terminal coiled-coil domains

机译:ELKS通过其N末端卷曲螺旋结构域控制兴奋性突触中易于释放的囊泡池

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摘要

In a presynaptic nerve terminal, synaptic strength is determined by the pool of readily releasable vesicles (RRP) and the probability of release (P) of each RRP vesicle. These parameters are controlled at the active zone and vary across synapses, but how such synapse specific control is achieved is not understood. ELKS proteins are enriched at vertebrate active zones and enhance P at inhibitory hippocampal synapses, but ELKS functions at excitatory synapses are not known. Studying conditional knockout mice for ELKS, we find that ELKS enhances the RRP at excitatory synapses without affecting P. Surprisingly, ELKS C-terminal sequences, which interact with RIM, are dispensable for RRP enhancement. Instead, the N-terminal ELKS coiled-coil domains that bind to Liprin-α and Bassoon are necessary to control RRP. Thus, ELKS removal has differential, synapse-specific effects on RRP and P, and our findings establish important roles for ELKS N-terminal domains in synaptic vesicle priming.>DOI:
机译:在突触前神经末梢中,突触强度由易释放囊泡(RRP)池和每个RRP囊泡释放的概率(P)决定。这些参数在活动区被控制并且在突触之间变化,但是尚不清楚如何实现这种突触特异性控制。 ELKS蛋白在脊椎动物活动区富集,并在抑制性海马突触中增强P,但ELKS在兴奋性突触中的功能尚不清楚。研究条件基因敲除小鼠的ELKS,我们发现ELKS增强了兴奋性突触的RRP而不会影响P。令人惊讶的是,与RIM相互作用的ELKS C末端序列对于RRP增强是必不可少的。取而代之的是,与Liprin-α和Bassoon结合的N末端ELKS卷曲螺旋结构域对于控制RRP是必需的。因此,ELKS去除对RRP和P具有不同的突触特异性作用,我们的发现为ELKS N末端域在突触小泡引发中发挥重要作用。> DOI:

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