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- W2007503666 abstract "The ability to concentrate the urine was an essential step in the adaptation of animals to life in a terrestrial environment. Only mammals and birds produce a urine which is hypertonic to plasma. A concentrated urine is formed in the kidney collecting duct in response to vasopressin by the massive reabsorption of from luminal fluid. The most prominent feature of transport in the collecting duct is the rapid and large change in permeability induced by vasopressin. In isolated perfused rabbit collecting duct segments, for example, the lag time between the addition of vasopressin and the appearance of an increase of permeability is less than 30 seconds [1], and more than 10-fold increases in permeability have been reported [2, 3]. The mechanisms responsible for this drastic change in permeability have been studied extensively over the past three decades. Current models, as reviewed by Jo and Harris in this issue, hold that the vasopressin-induced changes in permeability are due to the insertion and retrieval of water proteins to and from the apical membrane of collecting duct cells. There is now abundant functional and morphological evidence supporting the presence of channels in the apical membrane of collecting duct. Following the discovery of AQP-CHIP as the first identified channel protein [4, 5], which is present in many transporting tissues including the kidney proximal tubules and thin descending limb of Henle [6–8], we succeeded in cloning another channel, AQP–CD, which is expressed in collecting ducts [9]. Accumulating evidence indicates that AQP–CD is the vasopressin-regulated channel of collecting duct. Very recently we have also cloned an additional channel protein, named AQP3, which is expressed at the basolateral membrane of collecting ducts of the kidney [10]. This review will focus mainly on these collecting duct specific channels." @default.
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- W2007503666 date "1995-10-01" @default.
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- W2007503666 title "Water channels in the kidney collecting duct" @default.
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- W2007503666 doi "https://doi.org/10.1038/ki.1995.391" @default.
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