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Aquaporin mediated water flux as a target for diuretic development.

机译:水通道介导的水通量作为利尿剂开发的目标。

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Within the past decade an entire family of membrane proteins--aquaporins--which function as transmembrane water channels has been identified; they occur throughout the plant, animal, and bacterial kingdoms. Several family members permit glycerol and urea permeability. Most aquaporins are inhibited by mercury. Constitutively expressed aquaporin 1 is the major permeability channel of the proximal tubule, descending thin limb of the loop of Henle, and it is also found in vasa recta. Aquaporin 2 is expressed in the principal cells of the collecting duct where it shuttles between intracellular vesicles and the apical membrane in response to vasopressin. Aquaporin 2 mutations cause nephrogenic diabetes insipidus; increased aquaporin 2 activity is implicated in the pathophysiology of heart failure, cirrhosis, and nephrotic syndrome. Aquaporins 3 and 4 provide basolateral membrane water channels in the collecting duct. These 4 channels and 6 others are also found elsewhere throughout the body. The physiological importance of several of the channels remains unknown. Aquaporin 1 inhibitors might induce useful diuresis, but humans who lack aquaporin 1 have no significant clinical disease. Inhibition of aquaporin 2 activity by vasopressin receptor antagonists may be useful in heart failure, cirrhosis, nephrotic syndrome, and the syndrome of inappropriate antidiuretic hormone (ADH) release.
机译:在过去的十年中,已经确定了整个膜蛋白家族-水通道蛋白-起着跨膜水通道的作用。它们遍布植物,动物和细菌界。几个家族成员允许甘油和尿素渗透。大多数水通道蛋白都被汞抑制。组成性表达的水通道蛋白1是近端小管的主要通透性通道,是Henle环的薄肢下降,也存在于直肠中。水通道蛋白2在收集管的主要细胞中表达,在其中其响应血管加压素在细胞内囊泡和顶膜之间穿梭。水通道蛋白2突变导致肾病性尿崩症;水通道蛋白2活性增加与心力衰竭,肝硬化和肾病综合征的病理生理有关。水通道蛋白3和4在收集管中提供了基底外侧膜水通道。这4个通道和其他6个通道也可以在全身其他地方找到。几个通道的生理重要性仍然未知。水通道蛋白1抑制剂可能诱导有用的利尿作用,但是缺乏水通道蛋白1的人没有明显的临床疾病。血管加压素受体拮抗剂抑制水通道蛋白2的活性可能在心力衰竭,肝硬化,肾病综合征和抗利尿激素(ADH)释放综合征中有用。

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