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The contribution of TRPC1 TRPC3 TRPC5 and TRPC6 to touch and hearing

机译:TRPC1TRPC3TRPC5和TRPC6对触摸和听觉的贡献

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摘要

Transient receptor potential channels have diverse roles in mechanosensation. Evidence is accumulating that members of the canonical subfamily of TRP channels (TRPC) are involved in touch and hearing. Characteristic features of TRP channels include their high structural homology and their propensity to form heteromeric complexes which suggests potential functional redundancy. We previously showed that TRPC3 and TRPC6 double knockout animals have deficits in light touch and hearing whilst single knockouts were apparently normal. We have extended these studies to analyse deficits in global quadruple TRPC1, 3, 5 and 6 null mutant mice. We examined both touch and hearing in behavioural and electrophysiological assays, and provide evidence that the quadruple knockout mice have larger deficits than the TRPC3 TRPC6 double knockouts. Mechano-electrical transducer currents of cochlear outer hair cells were however normal. This suggests that TRPC1, TRPC3, TRPC5 and TRPC6 channels contribute to cutaneous and auditory mechanosensation in a combinatorial manner, but have no direct role in cochlear mechanotransduction.
机译:瞬态受体电位通道在机械传感中具有多种作用。越来越多的证据表明,TRP渠道的规范亚科(TRPC)的成员参与了触摸和听觉。 TRP通道的特征包括其高度的结构同源性和它们形成异聚复合物的倾向,这表明潜在的功能冗余。先前我们曾证明TRPC3和TRPC6双敲除动物在轻触和听觉上有缺陷,而单敲除显然是正常的。我们已经扩展了这些研究,以分析全局四倍TRPC1、3、5和6无效突变小鼠的缺陷。我们在行为和电生理分析中检查了触摸和听觉,并提供了证据表明四联敲除小鼠比TRPC3 TRPC6双敲除小鼠具有更大的缺陷。然而,耳蜗外毛细胞的机电转换电流是正常的。这表明TRPC1,TRPC3,TRPC5和TRPC6通道以组合方式有助于皮肤和听觉机械感觉,但在耳蜗机械传导中没有直接作用。

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