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胆固醇影响听觉毛细胞中的电压门控钙通道和 BK 型钾通道。

Cholesterol influences voltage-gated calcium channels and BK-type potassium channels in auditory hair cells.

机构信息

Department of Otolaryngology, University of Michigan, Ann Arbor, Michigan, United States of America.

出版信息

PLoS One. 2011;6(10):e26289. doi: 10.1371/journal.pone.0026289. Epub 2011 Oct 14.

Abstract

The influence of membrane cholesterol content on a variety of ion channel conductances in numerous cell models has been shown, but studies exploring its role in auditory hair cell physiology are scarce. Recent evidence shows that cholesterol depletion affects outer hair cell electromotility and the voltage-gated potassium currents underlying tall hair cell development, but the effects of cholesterol on the major ionic currents governing auditory hair cell excitability are unknown. We investigated the effects of a cholesterol-depleting agent (methyl beta cyclodextrin, MβCD) on ion channels necessary for the early stages of sound processing. Large-conductance BK-type potassium channels underlie temporal processing and open in a voltage- and calcium-dependent manner. Voltage-gated calcium channels (VGCCs) are responsible for calcium-dependent exocytosis and synaptic transmission to the auditory nerve. Our results demonstrate that cholesterol depletion reduced peak steady-state calcium-sensitive (BK-type) potassium current by 50% in chick cochlear hair cells. In contrast, MβCD treatment increased peak inward calcium current (~30%), ruling out loss of calcium channel expression or function as a cause of reduced calcium-sensitive outward current. Changes in maximal conductance indicated a direct impact of cholesterol on channel number or unitary conductance. Immunoblotting following sucrose-gradient ultracentrifugation revealed BK expression in cholesterol-enriched microdomains. Both direct impacts of cholesterol on channel biophysics, as well as channel localization in the membrane, may contribute to the influence of cholesterol on hair cell physiology. Our results reveal a new role for cholesterol in the regulation of auditory calcium and calcium-activated potassium channels and add to the growing evidence that cholesterol is a key determinant in auditory physiology.

摘要

已经表明,膜胆固醇含量会影响多种离子通道在众多细胞模型中的传导能力,但探索其在听觉毛细胞生理学中作用的研究却很少。最近的证据表明,胆固醇耗竭会影响外毛细胞的电活动和高毛细胞发育所依赖的电压门控钾电流,但胆固醇对控制听觉毛细胞兴奋性的主要离子电流的影响尚不清楚。我们研究了胆固醇耗竭剂(甲基-β-环糊精,MβCD)对声音处理早期阶段所需离子通道的影响。大电导 BK 型钾通道是时间处理的基础,以电压和钙依赖性方式开放。电压门控钙通道(VGCCs)负责钙依赖性胞吐作用和向听觉神经的突触传递。我们的结果表明,胆固醇耗竭使鸡耳蜗毛细胞中钙敏稳态(BK 型)钾电流峰值降低了 50%。相比之下,MβCD 处理增加了峰值内向钙电流(~30%),排除了钙通道表达或功能丧失作为钙敏外向电流减少的原因。最大电导的变化表明胆固醇直接影响通道数量或单位电导。蔗糖梯度超速离心后的免疫印迹显示 BK 在富含胆固醇的微区表达。胆固醇对通道生物物理学的直接影响,以及通道在膜中的定位,都可能导致胆固醇对毛细胞生理学的影响。我们的结果揭示了胆固醇在调节听觉钙和钙激活钾通道中的新作用,并为胆固醇是听觉生理学关键决定因素的日益增多的证据增添了新的证据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0342/3194812/812c19f18dce/pone.0026289.g001.jpg

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