首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Molecular cloning and expression of a member of the aquaporin family with permeability to glycerol and urea in addition to water expressed at the basolateral membrane of kidney collecting duct cells.
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Molecular cloning and expression of a member of the aquaporin family with permeability to glycerol and urea in addition to water expressed at the basolateral membrane of kidney collecting duct cells.

机译:水合蛋白家族成员的分子克隆和表达除了在肾脏收集导管细胞的基底外侧膜表达的水以外还具有对甘油和尿素的渗透性。

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摘要

Water transport in highly water-permeable membranes is conducted by water-selective pores--namely, water channels. The recent cloning of water channels revealed the water-selective characteristics of these proteins when expressed in Xenopus oocytes or reconstituted in liposomes. Currently, it is assumed that the function of water channels is to transport only water. We now report the cloning of a member of the water channel that also transports nonionic small molecules such as urea and glycerol. We named this channel aquaporin 3 (AQP3) for its predominant water permeability. AQP3 has amino acid sequence identity with major intrinsic protein (MIP) family proteins including AQP-channel-forming integral membrane protein, AQP-collecting duct, MIP, AQP-gamma tonoplast intrinsic protein, nodulin 26, and glycerol facilitator (33-42%). Thus, AQP3 is an additional member of the MIP family. Osmotic water permeability of Xenopus oocytes measured by videomicroscopy was 10-fold higher in oocytes injected with AQP3 transcript than with water-injected oocytes. The increase in osmotic water permeability was inhibited by HgCl2, and this effect was reversed by a reducing agent, 2-mercaptoethanol. Although to a smaller degree, AQP3 also facilitated the transport of nonionic small solutes such as urea and glycerol, while the previously cloned water channels are permeable only to water when expressed in Xenopus oocytes. AQP3 mRNA was expressed abundantly in kidney medulla and colon. In kidney, it was exclusively immunolocalized at the basolateral membrane of collecting duct cells. AQP3 may function as a water and urea exit mechanism in antidiuresis in collecting duct cells.
机译:高透水膜中的水传输是通过水选择性孔(即水通道)进行的。水通道的最新克隆揭示了这些蛋白质在非洲爪蟾卵母细胞中表达或在脂质体中重构时的水选择性特征。当前,假定水通道的功能是仅输送水。我们现在报告克隆了一部分水通道,该通道还可以运输非离子小分子,例如尿素和甘油。我们将此通道命名为Aquaporin 3(AQP3),因为它具有出色的透水性。 AQP3与主要内在蛋白(MIP)家族蛋白具有氨基酸序列同一性,包括形成AQP通道的整合膜蛋白,AQP收集管,MIP,AQP-γ液泡膜内在蛋白,结节蛋白26和甘油促进剂(33-42% )。因此,AQP3是MIP系列的另一个成员。通过视频显微镜测量的非洲爪蟾卵母细胞的渗透水渗透性是注射AQP3转录本的卵母细胞的10倍。 HgCl2抑制了渗透水渗透性的增加,而还原剂2-巯基乙醇则逆转了这种作用。尽管在较小程度上,AQP3还促进了非离子性小溶质(如尿素和甘油)的运输,而先前克隆的水通道在非洲爪蟾卵母细胞中表达时仅对水具有渗透性。 AQP3 mRNA在肾髓质和结肠中大量表达。在肾脏中,它仅免疫定位在收集导管细胞的基底外侧膜上。 AQP3可能在收集导管细胞的抗利尿作用中充当水和尿素排出机制。

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