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Calcium channels in mouse hair cells: function, properties and pharmacology.

机译:小鼠毛细胞中的钙通道:功能,性质和药理学。

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摘要

Adult inner hair cells (IHCs) possess voltage-activated Ca2+ currents that couple receptor potentials to transmitter release at the afferent synapses. Before the onset of hearing both IHCs and outer hair cells (OHCs) exhibit Ca2+ currents. More than 90% of neonatal hair cell (HC) currents flow through alpha1D Ca2+ channel subunits because they are absent in both IHCs and OHCs from alpha1D-/- mice and residual currents are insensitive to L-type agonists. Since lack of the alpha1D-subunit leads to HC degeneration and profound deafness, class D L-type Ca2+ currents seem to be crucial for the development and functioning of the inner ear. Neonatal HC Ca2+ currents were studied using the whole-cell patch clamp technique. They showed rapid activation, rapid deactivation and very little inactivation. They started activating as negative as -65mV. In contrast to alpha1C-mediated (classical L-type) Ca2+ currents, they showed a rather low sensitivity to various L-type antagonists. 10 microM nifedipine e.g. blockedHC Ca2+ currents by about 40% whereas class C L-type Ca2+ currents are completely blocked by 100nM nifedipine. The L-type channel agonist Bay K 8644 increased the HC Ca2+ current by 100-200% and shifted the IV curve to more negative potentials which is similar to its effects in alpha1C-mediated Ca2+ currents.
机译:成年内毛细胞(IHC)具有电压激活的Ca2 +电流,该电流将受体电位耦合到传入突触处的递质释放。在听力开始之前,IHC和外毛细胞(OHC)都显示Ca2 +电流。超过90%的新生儿毛细胞(HC)电流流过alpha1D Ca2 +通道亚基,因为来自alpha1D-/-小鼠的IHC和OHC中都不存在它们,并且剩余电流对L型激动剂不敏感。由于缺少alpha1D亚基会导致HC变性和严重耳聋,因此D类L型Ca2 +电流似乎对内耳的发育和功能至关重要。使用全细胞膜片钳技术研究了新生儿HC Ca2 +电流。它们显示出快速活化,快速失活和很少失活。他们开始将负电压激活为-65mV。与alpha1C介导的(经典L型)Ca2 +电流相反,它们对各种L型拮抗剂表现出相当低的敏感性。 10微硝苯地平例如100nM的硝苯地平可完全阻断HC Ca2 +电流约40%,而C类L型Ca2 +电流被完全阻断。 L型通道激动剂Bay K 8644使HC Ca2 +电流增加了100-200%,并将IV曲线移动到更多的负电位,这与其在alpha1C介导的Ca2 +电流中的作用相似。

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