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Developmental refinement of hair cell synapses tightens the coupling of Ca2+ influx to exocytosis

机译:毛细胞突触的发育完善加强了Ca2 +内流与胞吐作用的耦合

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摘要

Cochlear inner hair cells (IHCs) develop from pre-sensory pacemaker to sound transducer. Here, we report that this involves changes in structure and function of the ribbon synapses between IHCs and spiral ganglion neurons (SGNs) around hearing onset in mice. As synapses matured they changed from holding several small presynaptic active zones (AZs) and apposed postsynaptic densities (PSDs) to one large AZ/PSD complex per SGN bouton. After the onset of hearing (i) IHCs had fewer and larger ribbons; (ii) CaV1.3 channels formed stripe-like clusters rather than the smaller and round clusters at immature AZs; (iii) extrasynaptic CaV1.3-channels were selectively reduced, (iv) the intrinsic Ca2+ dependence of fast exocytosis probed by Ca2+ uncaging remained unchanged but (v) the apparent Ca2+ dependence of exocytosis linearized, when assessed by progressive dihydropyridine block of Ca2+ influx. Biophysical modeling of exocytosis at mature and immature AZ topographies suggests that Ca2+ influx through an individual channel dominates the [Ca2+] driving exocytosis at each mature release site. We conclude that IHC synapses undergo major developmental refinements, resulting in tighter spatial coupling between Ca2+ influx and exocytosis.
机译:耳蜗内毛细胞(IHC)从预感起搏器发展到声音传感器。在这里,我们报告这涉及小鼠听力发作周围IHC和螺旋神经节神经元(SGNs)之间的带状突触的结构和功能的变化。随着突触的成熟,它们从拥有几个小的突触前活动区(AZ)和并置的突触后密度(PSD)变为每个SGN布顿一个大的AZ / PSD复合体。听证开始后(i)IHC的丝带越来越少; (ii)CaV1.3通道形成条状簇,而不是在未成熟的AZ形成较小的圆形簇; (iii)选择性还原突触外CaV1.3-通道,(iv)Ca 2 探测的快速胞吐作用固有的Ca 2 + 依赖性 + 的解笼开度保持不变,但(v)通过Ca 的进行性二氢吡啶阻滞评估,胞吐作用的表观Ca 2 + 线性依赖2 + 涌入。在成熟和不成熟的AZ地形上胞吐作用的生物物理模型表明,通过单个通道的Ca 2 + 流入控制了[Ca 2 + ]在每个成熟释放位点驱动胞吐作用。我们得出的结论是,IHC突触经历了主要的发育完善,导致Ca 2 + 内流与胞吐作用之间的空间耦合更加紧密。

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