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首页> 外文期刊>Brazilian Journal of Medical and Biological Research >TMEM16 proteins: the long awaited calcium-activated chloride channels?
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TMEM16 proteins: the long awaited calcium-activated chloride channels?

机译:TMEM16蛋白:期待已久的钙激活氯离子通道?

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Currents mediated by calcium-activated chloride channels (CaCCs), observed for the first time in Xenopus oocytes, have been recorded in many cells and tissues ranging from different types of neurons to epithelial and muscle cells. CaCCs play a role in the regulation of excitability in neurons including sensory receptors. In addition, they are crucial mediators of chloride movements in epithelial cells where their activity regulates electrolyte and fluid transport. The roles of CaCCs, particularly in epithelia, are briefly reviewed with emphasis on their function in secretory epithelia. The recent identification by three independent groups, using different strategies, of TMEM16A as the molecular counterpart of the CaCC is discussed. TMEM16A is part of a family that has 10 other members in mice. The discovery of the potential TMEM16 anion channel activity opens the way for the molecular investigation of the role of these anion channels in specific cells and in organ physiology and pathophysiology. The identification of TMEM16A protein as a CaCC chloride channel molecule represents a great triumph of scientific perseverance and ingenuity. The varied approaches used by the three independent research groups also augur well for the solidity of the discovery.
机译:在爪蟾卵母细胞中首次观察到由钙激活的氯离子通道(CaCC)介导的电流,已记录在许多细胞和组织中,范围从不同类型的神经元到上皮和肌肉细胞。 CaCC在调节神经元(包括感觉受体)的兴奋性中发挥作用。此外,它们是上皮细胞中氯化物运动的关键介质,在这些细胞中它们的活性调节电解质和液体的运输。简要回顾了CaCC的作用,尤其是在上皮细胞中的作用,重点是它们在分泌性上皮细胞中的功能。讨论了由三个独立的小组使用不同的策略最近鉴定的TMEM16A作为CaCC的分子对应物。 TMEM16A是一个在小鼠中有10个其他成员的家族的一部分。潜在的TMEM16阴离子通道活性的发现为分子研究这些阴离子通道在特定细胞中以及器官生理和病理生理中的作用开辟了道路。将TMEM16A蛋白鉴定为CaCC氯化物通道分子代表了科学毅力和独创性的巨大胜利。三个独立研究小组使用的各种方法也很好地证明了这一发现的可靠性。

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