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首页> 外文期刊>The Journal of Physiology >Burst activity and ultrafast activation kinetics of CaV1.3 Ca2+ channels support presynaptic activity in adult gerbil hair cell ribbon synapses
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Burst activity and ultrafast activation kinetics of CaV1.3 Ca2+ channels support presynaptic activity in adult gerbil hair cell ribbon synapses

机译:CaV1.3 Ca2 +通道的爆发活性和超快活化动力学支持成人沙鼠毛细胞带状突触的突触前活性。

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摘要

Abstract Auditory information transfer to afferent neurons relies on precise triggering of neurotransmitter release at the inner hair cell (IHC) ribbon synapses by Ca2+ entry through CaV1.3 Ca2+ channels. Despite the crucial role of CaV1.3 Ca2+ channels in governing synaptic vesicle fusion, their elementary properties in adult mammals remain unknown. Using near-physiological recording conditions we investigated Ca2+ channel activity in adult gerbil IHCs. We found that Ca2+ channels are partially active at the IHC resting membrane potential (-60 mV). At -20 mV, the large majority (70%) of Ca2+ channel first openings occurred with an estimated delay of about 50 μs in physiological conditions, with a mean open time of 0.5 ms. Similar to other ribbon synapses, Ca2+ channels in IHCs showed a low mean open probability (0.21 at -20 mV), but this increased significantly (up to 0.91) when Ca2+ channel activity switched to a bursting modality. We propose that IHC Ca2+ channels are sufficiently rapid to transmit fast signals of sound onset and support phase-locking. Short-latency Ca2+ channel opening coupled to multivesicular release would ensure precise and reliable signal transmission at the IHC ribbon synapse.
机译:摘要听觉信息传递至传入神经元依赖于Ca2 +通过CaV1.3 Ca2 +通道进入内毛细胞(IHC)带状突触的神经递质释放的精确触发。尽管CaV1.3 Ca2 +通道在控制突触小泡融合中起关键作用,但它们在成年哺乳动物中的基本特性仍然未知。使用接近生理学的记录条件,我们调查了成年沙鼠IHCs中的Ca2 +通道活性。我们发现,Ca2 +通道在IHC静息膜电位(-60 mV)上具有部分活性。在-20 mV时,大多数(> 70%)Ca2 +通道首次打开发生在生理条件下,估计延迟时间约为50μs,平均打开时间为0.5 ms。与其他功能区突触类似,IHC中的Ca2 +通道显示出较低的平均打开概率(-20 mV下为0.21),但是当Ca2 +通道的活动切换为爆发形式时,其显着增加(高达0.91)。我们建议IHC Ca2 +通道应足够快,以传输声音开始的快速信号并支持锁相。 Ca2 +通道的短时延开放与多囊泡释放相结合,将确保在IHC碳带突触处精确而可靠的信号传输。

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