首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Quantal release of acetylcholine in mice with reduced levels of the vesicular acetylcholine transporter.
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Quantal release of acetylcholine in mice with reduced levels of the vesicular acetylcholine transporter.

机译:在水泡性乙酰胆碱转运蛋白水平降低的小鼠中乙酰胆碱的量子释放。

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摘要

Mammalian motor nerve terminals contain hundreds of thousands of synaptic vesicles, but only a fraction of these vesicles is immediately available for release, the remainder forming a reserve pool. The supply of vesicles is replenished through endocytosis, and newly formed vesicles are refilled with acetylcholine through a process that depends on the vesicular acetylcholine transporter (VAChT). During expression of short-term plasticity, quantal release can be increased, but it is unknown whether this reflects enhanced recruitment of vesicles from the reserve pool or rapid recycling. We examined spontaneous and evoked release of acetylcholine at endplates from genetically modified VAChT KD(HOM) mice that express approximately 30% of the normal level of VAChT to determine steps rate-limited by synaptic vesicle filling. Quantal content and quantal size were reduced in VAChT KD(HOM) mice compared with wild-type controls. Although high-frequency stimulation did not reduce quantal size further, the post-tetanic increase in end-plate potential amplitude or MEPP frequency was significantly smaller in VAChT KD(HOM) mice. This was the case even when tetanic depression was eliminated using an extracellular solution containing reduced Ca(2+) and raised Mg(2+). These results reveal the dependence of short-term plasticity on the level of VAChT expression and efficient synaptic vesicle filling.
机译:哺乳动物的运动神经末梢包含成千上万的突触小泡,但这些小泡中只有一小部分可立即释放,其余形成储备池。通过内吞作用补充囊泡的供应,并通过依赖于囊泡乙酰胆碱转运蛋白(VAChT)的过程为新形成的囊泡补充乙酰胆碱。在表达短期可塑性的过程中,可以增加定量释放,但是尚不清楚这是否反映出从储备池中增加的囊泡募集或快速回收。我们检查了乙酰胆碱在基因改造的VAChT KD(HOM)小鼠终板上自发和诱发的乙酰胆碱释放,这些小鼠表达大约VAChT正常水平的30%,以确定由突触小泡充盈限制的步速。与野生型对照相比,VAChT KD(HOM)小鼠的量子含量和数量减少。尽管高频刺激并没有进一步减少数量大小,但在VAChT KD(HOM)小鼠中,终板电位电位或MEPP频率的强直性增加明显较小。即使使用包含减少的Ca(2+)和升高的Mg(2+)的细胞外溶液消除强直性抑郁症,情况也是如此。这些结果揭示了短期可塑性对VAChT表达水平和有效的突触囊泡充盈的依赖性。

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