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The family of K2P channels: salient structural and functional properties

机译:K2P通道家族:显着的结构和功能特性

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摘要

Potassium channels participate in many biological functions, from ion homeostasis to generation and modulation of the electrical membrane potential. They are involved in a large variety of diseases. In the human genome, 15 genes code for K+ channels with two pore domains (K2P). These channels form dimers of pore-forming subunits that produce background conductances finely regulated by a range of natural and chemical effectors, including signalling lipids, temperature, pressure, pH, antidepressants and volatile anaesthetics. Since the cloning of TWIK1, the prototypical member of this family, a lot of work has been carried out on their structure and biology. These studies are still in progress, but data gathered so far show that K2P channels are central players in many processes, including ion homeostasis, hormone secretion, cell development and excitability. A growing number of studies underline their implication in physiopathological mechanisms, such as vascular and pulmonary hypertension, cardiac arrhythmias, nociception, neuroprotection and depression. This review gives a synthetic view of the most noticeable features of these channels.
机译:钾离子通道参与许多生物学功能,从离子稳态到膜电位的生成和调节。他们参与多种疾病。在人类基因组中,有15个基因编码具有两个孔结构域(K2P)的K + 通道。这些通道形成孔形成亚基的二聚体,其产生由一系列天然和化学效应器(包括信号脂质,温度,压力,pH,抗抑郁药和挥发性麻醉剂)精细调节的背景电导。自该家族的原型成员TWIK1克隆以来,已经在其结构和生物学方面进行了大量工作。这些研究仍在进行中,但是到目前为止收集的数据表明,K2P通道在许多过程中起着核心作用,包括离子稳态,激素分泌,细胞发育和兴奋性。越来越多的研究强调它们在生理病理机制中的意义,例如血管和肺动脉高压,心律不齐,伤害感受,神经保护和抑郁。这篇评论给出了这些渠道最引人注目的功能的综合视图。

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