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毛细胞调谐的机制。

Mechanisms of hair cell tuning.

作者信息

Fettiplace R, Fuchs P A

机构信息

Department of Physiology, University of Wisconsin, Madison 53706, USA.

出版信息

Annu Rev Physiol. 1999;61:809-34. doi: 10.1146/annurev.physiol.61.1.809.

Abstract

Mechanosensory hair cells of the vertebrate inner ear contribute to acoustic tuning through feedback processes involving voltage-gated channels in the basolateral membrane and mechanotransduction channels in the apical hair bundle. The specific number and kinetics of calcium-activated (BK) potassium channels determine the resonant frequency of electrically tuned hair cells. Kinetic variation among BK channels may arise through alternative splicing of slo gene mRNA and combination with modulatory beta subunits. The number of transduction channels and their rate of adaptation rise with hair cell response frequency along the cochlea's tonotopic axis. Calcium-dependent feedback onto transduction channels may underlie active hair bundle mechanics. The relative contributions of electrical and mechanical feedback to active tuning of hair cells may vary as a function of sound frequency.

摘要

脊椎动物内耳的机械感觉毛细胞通过涉及基底外侧膜电压门控通道和顶端毛束机械转导通道的反馈过程,对听觉调谐起作用。钙激活(BK)钾通道的具体数量和动力学决定了电调谐毛细胞的共振频率。BK通道之间的动力学差异可能通过slo基因mRNA的可变剪接以及与调节性β亚基的结合而产生。沿着耳蜗的音频定位轴,转导通道的数量及其适应速率会随着毛细胞反应频率的增加而上升。对转导通道的钙依赖性反馈可能是活跃的毛束力学的基础。电反馈和机械反馈对毛细胞主动调谐的相对贡献可能会随声音频率而变化。

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