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钙激活氯离子通道 ANO1(TMEM16A)的功能和调节。

Function and Regulation of the Calcium-Activated Chloride Channel Anoctamin 1 (TMEM16A).

机构信息

Physics Institute, Universidad Autónoma de San Luis Potosí, San Luis Potosí, Mexico.

Department of Physiology and Biophysics, School of Medicine of Universidad Autónoma de San Luis Potosí, San Luis Potosí, Mexico.

出版信息

Handb Exp Pharmacol. 2024;283:101-151. doi: 10.1007/164_2022_592.

Abstract

Various human tissues express the calcium-activated chloride channel Anoctamin 1 (ANO1), also known as TMEM16A. ANO1 allows the passive chloride flux that controls different physiological functions ranging from muscle contraction, fluid and hormone secretion, gastrointestinal motility, and electrical excitability. Overexpression of ANO1 is associated with pathological conditions such as hypertension and cancer. The molecular cloning of ANO1 has led to a surge in structural, functional, and physiological studies of the channel in several tissues. ANO1 is a homodimer channel harboring two pores - one in each monomer - that work independently. Each pore is activated by voltage-dependent binding of two intracellular calcium ions to a high-affinity-binding site. In addition, the binding of phosphatidylinositol 4,5-bisphosphate to sites scattered throughout the cytosolic side of the protein aids the calcium activation process. Furthermore, many pharmacological studies have established ANO1 as a target of promising compounds that could treat several illnesses. This chapter describes our current understanding of the physiological roles of ANO1 and its regulation under physiological conditions as well as new pharmacological compounds with potential therapeutic applications.

摘要

各种人体组织表达钙激活氯离子通道 ANOctamin 1(ANO1),也称为 TMEM16A。ANO1 允许被动氯离子流通过,从而控制从肌肉收缩、液体和激素分泌、胃肠道蠕动到电兴奋性等不同的生理功能。ANO1 的过表达与高血压和癌症等病理状况有关。ANO1 的分子克隆导致了对几种组织中通道的结构、功能和生理学研究的激增。ANO1 是一种同源二聚体通道,每个单体都有两个孔 - 每个孔都独立工作。每个孔通过电压依赖性结合两个细胞内钙离子到高亲和力结合位点来激活。此外,磷脂酰肌醇 4,5-二磷酸与散布在蛋白胞质侧的多个位点结合有助于钙激活过程。此外,许多药理学研究已经确定 ANO1 是有前途的化合物的靶点,这些化合物可能用于治疗多种疾病。本章描述了我们目前对 ANO1 的生理作用及其在生理条件下的调节以及具有潜在治疗应用的新型药理学化合物的理解。

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