Castellano-Muñoz Manuel, Schnee Michael E, Ricci Anthony J
Department of Otolaryngology, Stanford University School of Medicine, Stanford, California; and
Department of Otolaryngology, Stanford University School of Medicine, Stanford, California; and.
J Neurophysiol. 2016 Jan 1;115(1):226-39. doi: 10.1152/jn.00559.2015. Epub 2015 Oct 28.
Hair cells from auditory and vestibular systems transmit continuous sound and balance information to the central nervous system through the release of synaptic vesicles at ribbon synapses. The high activity experienced by hair cells requires a unique mechanism to sustain recruitment and replenishment of synaptic vesicles for continuous release. Using pre- and postsynaptic electrophysiological recordings, we explored the potential contribution of calcium-induced calcium release (CICR) in modulating the recruitment of vesicles to auditory hair cell ribbon synapses. Pharmacological manipulation of CICR with agents targeting endoplasmic reticulum calcium stores reduced both spontaneous postsynaptic multiunit activity and the frequency of excitatory postsynaptic currents (EPSCs). Pharmacological treatments had no effect on hair cell resting potential or activation curves for calcium and potassium channels. However, these drugs exerted a reduction in vesicle release measured by dual-sine capacitance methods. In addition, calcium substitution by barium reduced release efficacy by delaying release onset and diminishing vesicle recruitment. Together these results demonstrate a role for calcium stores in hair cell ribbon synaptic transmission and suggest a novel contribution of CICR in hair cell vesicle recruitment. We hypothesize that calcium entry via calcium channels is tightly regulated to control timing of vesicle fusion at the synapse, whereas CICR is used to maintain a tonic calcium signal to modulate vesicle trafficking.
来自听觉和前庭系统的毛细胞通过在带状突触处释放突触小泡,将持续的声音和平衡信息传递给中枢神经系统。毛细胞经历的高活性需要一种独特的机制来维持突触小泡的补充和再补充,以实现持续释放。利用突触前和突触后的电生理记录,我们探究了钙诱导钙释放(CICR)在调节突触小泡向听觉毛细胞带状突触募集方面的潜在作用。用靶向内质网钙库的药物对CICR进行药理学操作,可降低自发的突触后多单位活动以及兴奋性突触后电流(EPSC)的频率。药理学处理对毛细胞静息电位或钙通道和钾通道的激活曲线没有影响。然而,这些药物通过双正弦电容法测量,使小泡释放减少。此外,用钡替代钙会延迟释放起始并减少小泡募集,从而降低释放效率。这些结果共同证明了钙库在毛细胞带状突触传递中的作用,并表明CICR在毛细胞小泡募集中有新的作用。我们假设,通过钙通道进入的钙受到严格调控,以控制突触处小泡融合的时间,而CICR则用于维持一个持续的钙信号来调节小泡运输。