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首页> 外文期刊>American Journal of Physiology >Aquaporins in avian kidneys: Function and perspectives
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Aquaporins in avian kidneys: Function and perspectives

机译:禽肾脏中的水通道蛋白:功能和观点

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For terrestrial vertebrates, water economy is a prerequisite for survival, and the kidney is their major osmoregulatory organ. Birds are the only vertebrates other than mammals that can concentrate urine in adaptation to terrestrial environments. Aquaporin (AQP) and glyceroporin (GLP) are phylogenetically old molecules and have been found in plants, microbial organisms, invertebrates, and vertebrates. Currently, 13 AQPs/ aquaGLPs and isoforms are known to be present in mammals. AQPs 1, 2, 3, 4, 6, 7, 8, and 11 are expressed in the kidney; of these, AQPs 1, 2, 3, 4, and 7 are shown to be involved in fluid homeostasis. In avian kidneys, AQPs 1, 2, 3, and 4 have been identified and characterized. Also, gene and/or amino acid sequences of AQP5, AQP7, AQP8, AQP9, AQP11, and AQP12 have been reported in birds. AQPs 2 and 3 are expressed along cortical and medullary collecting ducts (CDs) and are responsible, respectively, for the water inflow and outflow of CD epithelial cells. While AQP4 plays an important role in water exit in the CD of mammalian kidneys, it is unlikely to participate in water outflow in avian CDs. This review summarizes current knowledge on structure and function of avian AQPs and compares them to those in mammalian and nonmammalian vertebrates. Also, we aim to provide input into, and perspectives on, the role of renal AQPs in body water homeostasis during ontogenic and phylogenetic advancement.
机译:对于陆生脊椎动物,节水是生存的先决条件,而肾脏是它们的主要渗透调节器官。除了哺乳动物以外,鸟类是唯一可以集中尿液以适应陆地环境的脊椎动物。水通道蛋白(AQP)和甘油通道蛋白(GLP)是系统发生较老的分子,已在植物,微生物,无脊椎动物和脊椎动物中发现。当前,已知在哺乳动物中存在13种AQP / aquaGLP和同工型。 AQP 1、2、3、4、6、7、8和11在肾脏中表达;其中,AQP 1、2、3、4和7被证明与体液稳态有关。在禽肾中,已经鉴定并鉴定了AQP 1、2、3和4。而且,已经在鸟类中报道了AQP5,AQP7,AQP8,AQP9,AQP11和AQP12的基因和/或氨基酸序列。 AQP 2和3沿皮质和髓质收集管(CD)表达,分别负责CD上皮细胞的水流入和流出。尽管AQP4在哺乳动物肾脏CD中的出水中起着重要作用,但它不太可能参与禽CD中的水流出。这篇综述总结了有关禽类AQPs结构和功能的最新知识,并将它们与哺乳动物和非哺乳动物脊椎动物中的知识进行了比较。此外,我们的目标是在个体发育和系统发育过程中,为肾脏AQP在体内水稳态中的作用提供意见和见解。

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