首页> 外文期刊>The Journal of Physiology >TRPC-like conductance mediates restoration of intracellular Ca2+ in cochlear outer hair cells in the guinea pig and rat.
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TRPC-like conductance mediates restoration of intracellular Ca2+ in cochlear outer hair cells in the guinea pig and rat.

机译:类似于TRPC的电导介导豚鼠和大鼠耳蜗外毛细胞内细胞内Ca2 +的恢复。

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摘要

Ca2+ signalling is central to cochlear sensory hair cell physiology through its influence on sound transduction, membrane filter properties and neurotransmission. However, the mechanism for establishing Ca2+ homeostasis in these cells remains unresolved. Canonical transient receptor potential (TRPC) Ca2+ entry channels provide an important pathway for maintaining intracellular Ca2+ levels. TRPC3 subunit expression was detected in guinea pig and rat organ of Corti by RT-PCR, and localized to the sensory and neural poles of the inner and outer hair cells (OHCs) by confocal immunofluorescence imaging. A cation entry current with a TRPC-like phenotype was identified in guinea pig and rat OHCs by whole-cell voltage clamp. This slowly activating current was induced by the lowering of cytosolic Ca2+ levels ([Ca2+]i) following a period in nominally Ca2+-free solution. Activation was dependent upon the [Ca2+]o and was sustained until [Ca(2+)]i was restored. Ca2+ entry was confirmed by confocal fluorescence imaging, and rapidly recruited secondary charybdotoxin- and apamin-sensitive K(Ca) currents. Dual activation by the G protein-coupled receptor (GPCR)-phospholipase C-diacylglycerol (DAG) second messenger pathway was confirmed using the analogue 1-oleoyl-2-acetyl-sn-glycerol (OAG). Ion substitution experiments showed that the putative TRPC Ca2+ entry current was selective for Na+ > K+ with a ratio of 1: 0.6. The Ca2+ entry current was inhibited by the TRPC channel blocker 2-aminoethyl diphenylborate (2APB) and the tyrosine kinase inhibitor, erbstatin analogue. We conclude that TRPC Ca2+ entry channels, most likely incorporating TRPC3 subunits, support cochlear hair cell Ca2+ homeostasis and GPCR signalling.
机译:Ca2 +信号通过其对声音传导,膜滤器特性和神经传递的影响,对耳蜗感觉毛细胞生理至关重要。但是,在这些细胞中建立Ca2 +稳态的机制仍未解决。规范的瞬时受体电位(TRPC)Ca2 +进入通道为维持细胞内Ca2 +水平提供了重要途径。通过RT-PCR在豚鼠和大鼠的Corti器官中检测到TRPC3亚基的表达,并通过共聚焦免疫荧光成像将其定位在内部和外部毛细胞(OHC)的感觉和神经极。通过全细胞电压钳在豚鼠和大鼠OHC中鉴定出具有TRPC样表型的阳离子进入电流。在标称无Ca2 +的溶液中经过一段时间后,胞质Ca2 +水平([Ca2 +] i)的降低诱导了这种缓慢的激活电流。激活取决于[Ca2 +] o,并一直持续到[Ca(2 +)] i恢复。通过共聚焦荧光成像确认了Ca2 +的进入,并迅速募集了次生的Charybdotoxin-和apamin敏感的K(Ca)电流。使用类似的1-油酰基-2-乙酰基-sn-甘油(OAG)证实了G蛋白偶联受体(GPCR)-磷脂酶C-二酰基甘油(DAG)第二信使途径的双重激活。离子取代实验表明,假定的TRPC Ca2 +进入电流对Na +> K +具有选择性,比率为1:0.6。 Ca2 +进入电流被TRPC通道阻滞剂2-氨基乙基二苯硼酸酯(2APB)和酪氨酸激酶抑制剂erbstatin类似物抑制。我们得出的结论是,TRPC Ca2 +进入通道(最有可能合并了TRPC3亚基)支持耳蜗毛细胞Ca2 +稳态和GPCR信号传导。

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