The University of Tennessee Health Science Center, Memphis, TN, USA.
Adv Exp Med Biol. 2019;1115:53-75. doi: 10.1007/978-3-030-04278-3_3.
Cholesterol (CLR) is an essential structural lipid in the plasma membrane of animal cells. In addition, CLR has been widely recognized as a critical modulator of protein function, including ion channels. Voltage- and Ca-gated K (BK) channels control a wide variety of physiological processes, including cell excitability, smooth muscle contractility, sensory perception, neurotransmitter release, and hormone secretion. Thus, disruption of BK currents has been implicated in the pathophysiology of prevalent human diseases. The current chapter reviews the literature documenting CLR modulation of BK channel function at a variety of levels ranging from organ systems to artificial lipid bilayers. We discuss the use of CLR isomers and structural analogs as a tool to help in discerning the mechanisms underlying CLR-driven modification of BK current. The chapter is finalized with an overview of the phenomenology and potential mechanisms that govern CLR control over the alcohol (ethyl alcohol, ethanol) sensitivity of BK channels. Studies on CLR regulation of BK currents may ultimately pave the way for novel therapeutic approaches to combat prevalent pathophysiological and morbid conditions.
胆固醇(CLR)是动物细胞膜中必需的结构脂质。此外,CLR 已被广泛认为是蛋白质功能的关键调节剂,包括离子通道。电压和 Ca 门控 K(BK)通道控制着广泛的生理过程,包括细胞兴奋性、平滑肌收缩性、感觉感知、神经递质释放和激素分泌。因此,BK 电流的中断与常见人类疾病的病理生理学有关。本章回顾了文献,记录了 CLR 在从器官系统到人工脂质双层等多种水平上对 BK 通道功能的调节。我们讨论了使用 CLR 异构体和结构类似物作为工具来帮助辨别 CLR 驱动的 BK 电流修饰的机制。本章最后概述了控制 CLR 对 BK 通道对酒精(乙醇)敏感性的现象学和潜在机制。对 CLR 调节 BK 电流的研究可能最终为对抗常见病理生理和病态条件的新型治疗方法铺平道路。