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首页> 外文期刊>The Journal of Physiology >Activity-dependent changes in temporal components of neurotransmission at the juvenile mouse calyx of Held synapse.
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Activity-dependent changes in temporal components of neurotransmission at the juvenile mouse calyx of Held synapse.

机译:幼年小鼠花萼举行的突触中神经传递的时间成分的活动依赖的变化。

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摘要

The temporal fidelity of synaptic transmission is constrained by the reproducibility of time delays such as axonal conduction delay and synaptic delay, but very little is known about the modulation of these distinct components. In particular, synaptic delay is not generally considered to be modifiable under physiological conditions. Using simultaneous paired patch-clamp recordings from pre- and postsynaptic elements of the calyx of Held synapse, in juvenile mouse auditory brainstem slices, we show here that synaptic activity (20-200 Hz) leads to activity-dependent increases in synaptic delay and its variance as well as desynchronization of evoked responses. Such changes were most robust at 200 Hz in 2 mM extracellular Ca(2+) ([Ca(2+)](o)), and could be attenuated by lowering [Ca(2+)](o) to 1 mM, increasing temperature to 35 degrees C, or application of the GABA(B)R agonist baclofen, which inhibits presynaptic Ca(2+) currents (I(Ca)). Conduction delay also exhibited slight activity-dependent prolongation, but this prolongation was only sensitive to temperature, and not to [Ca(2+)](o) or baclofen. Direct voltage-clamp recordings of I(Ca) evoked by repeated action potential train template (200 Hz) revealed little jitter in the timing and kinetics of I(Ca) under various conditions, suggesting that increases in synaptic delay and its variance occur downstream of Ca(2+) entry. Loading the Ca(2+) chelator EGTA-AM into terminals reduced the progression rate, the extent of activity-dependent increases in various delay components, and their variance, implying that residual Ca(2+) accumulation in the presynaptic nerve terminal induces these changes. Finally, by applying a test pulse at different intervals following a 200 Hz train (150 ms), we demonstrated that prolongation in the various delay components reverses in parallel with recovery in synaptic strength. These observations suggest that a depletion of the readily releasable pool of SVs during high-frequency activity may downregulate not only synaptic strength but also decrease the temporal fidelity of neurotransmission at this and other central synapses.
机译:突触传递的时间保真度受诸如轴突传导延迟和突触延迟的时间延迟的可再现性的约束,但是对这些不同成分的调制知之甚少。特别地,通常认为在生理条件下突触延迟是不可改变的。在幼鼠的听觉脑干切片中,使用来自Held突触花萼的突触前和突触后元素的同时成对钳夹录音,我们在此处显示了突触活动(20-200 Hz)导致了突触延迟及其相关的活动依赖性增加方差以及诱发响应的不同步。此类变化在2 mM细胞外Ca(2+)([Ca(2 +)](o))中在200 Hz时最稳定,并且可以通过将[Ca(2 +)](o)降低至1 mM来衰减,将温度提高到35摄氏度,或应用GABA(B)R激动剂巴氯芬,抑制突触前Ca(2+)电流(I(Ca))。传导延迟也表现出轻微的活动依赖延长,但这种延长只对温度敏感,而不是对[Ca(2 +)](o)或巴氯芬。重复动作电位序列模板(200 Hz)诱发的I(Ca)的直接电压钳记录显示在各种条件下I(Ca)的时间和动力学几乎没有抖动,这表明突触延迟的增加及其方差发生在下游。 Ca(2+)条目。将Ca(2+)螯合剂EGTA-AM加载到末端降低了进展速度,各种延迟成分的活动依赖性增加的程度及其方差,暗示突触前神经末梢中残留的Ca(2+)积累会诱导这些变化。最后,通过在200 Hz序列(150 ms)之后以不同间隔施加测试脉冲,我们证明了各种延迟成分的延长与突触强度的恢复平行。这些观察结果表明,在高频活动过程中,易于释放的SV池的耗竭不仅可能下调突触强度,还可能降低此突触和其他中枢突触的神经传递的时间保真度。

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