首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Kidney-specific chloride channel, OmClC-K, predominantly expressed in the diluting segment of freshwater-adapted tilapia kidney
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Kidney-specific chloride channel, OmClC-K, predominantly expressed in the diluting segment of freshwater-adapted tilapia kidney

机译:肾脏特异性氯通道OmClC-K主要在淡水适应的罗非鱼肾脏的稀释段中表达

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The kidney plays an important role in osmoregulatioh in freshwater teleosts, which are exposed to the danger of osmotic loss of Na~+ and Cl~-. However, ion-transport mechanisms in the kidney are poorly understood, and ion transporters of the fish nephron have not been identified thus far. From Mozambique tilapia, Oreochro-mis mossambicus, we have cloned a chloride channel, which is a homologue of the mammalian kidney-specific chloride channel, ClC-K. The cDNA of the channel, named OmClC-K, encodes a protein whose amino acid sequence has high homology to Xenopus and mammalian ClC-K (Xenopus ClC-K, 41.8%; rat ClC-K2, 40.9%; rat ClC-K1, 40.1%). The mRNA of OmCIC-K was expressed exclusively in the kidney, and the expression level of mRNA was increased more in freshwater-adapted fish than seawater-adapted fish. The immunohistochemical study using a specific antibody showed that OmClC-K-positive cells were specifically located in the distal nephron segments. Immunoelectron microscopy further showed that immunoreaction of OmClC-K was recognizable on the structure of basolateral membrane infoldings in the distal tubule cells. The localization of OmClC-K and its induction in hypoosmotic media suggest that OmClC-K is involved in Cl~- reabsorption in the distal tubule of freshwater-adapted tilapia.
机译:在淡水硬骨鱼中,肾脏在渗透压调节中起着重要作用,而后者面临着Na〜+和Cl〜-渗透损失的危险。但是,人们对肾脏中的离子转运机制了解甚少,到目前为止,还没有发现鱼肾的离子转运蛋白。从莫桑比克罗非鱼(Oreochro-mis mossambicus)中,我们克隆了一个氯离子通道,该通道是哺乳动物肾脏特异性氯离子通道ClC-K的同源物。该通道的cDNA名为OmClC-K,编码一种蛋白质,其氨基酸序列与非洲爪蟾和哺乳动物ClC-K具有高度同源性(非洲爪蟾ClC-K,41.8%;大鼠ClC-K2,40.9%;大鼠ClC-K1, 40.1%)。 OmCIC-K的mRNA仅在肾脏中表达,与淡水适应的鱼相比,在淡水适应的鱼中mRNA的表达水平增加更多。使用特异性抗体的免疫组织化学研究表明,OmClC-K阳性细胞特异性位于远端肾单位节段。免疫电子显微镜进一步显示,OmClC-K的免疫反应在远端小管细胞的基底外侧膜折叠结构上是可识别的。 OmClC-K的定位及其在低渗介质中的诱导表明OmClC-K参与了适应淡水的罗非鱼远端小管中的Cl-重吸收。

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