首页> 美国卫生研究院文献>Frontiers in Physiology >Branchial Na+:K+:2Cl− cotransporter 1 and Na+/K+-ATPase α-subunit in a brackish water-type ionocyte of the euryhaline freshwater white-rimmed stingray Himantura signifer
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Branchial Na+:K+:2Cl− cotransporter 1 and Na+/K+-ATPase α-subunit in a brackish water-type ionocyte of the euryhaline freshwater white-rimmed stingray Himantura signifer

机译:淡水白缘黄Him鱼苦咸水型离子细胞中的分支Na +:K +:2Cl-转运蛋白1和Na + / K + -ATPaseα-亚基

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摘要

Himantura signifer is a freshwater stingray which inhabits rivers in Southeast Asia. It can survive in brackish water but not seawater. In brackish water, it becomes partially ureosmotic, but how it maintains its plasma hypoionic to the external medium is enigmatic because of the lack of a rectal gland. Here, we report for the first time the expression of Na+:K+:2Cl cotransporter 1 (nkcc1) in the gills of freshwaterH. signifer, and its moderate up-regulation (~2-fold) in response to brackish water (salinity 20) acclimation. The absence of the Ste20-related proline-alanine-rich kinase and oxidation stress response kinase 1 interaction site from the N-terminus of H. signifer Nkcc1 suggested that it might not be effectively activated by stress kinases in response to salinity changes as in more euryhaline teleosts. The increased activity of Nkcc1 during salt excretion in brackish water would lead to an influx of Na+ into ionocytes, and the maintenance of intracellular Na+ homeostasis would need the cooperation of Na+/K+-ATPase (Nka). We demonstrated for the first time the expression of nkaα1, nkaα2 and nkaα3 in the gills of H. signifer, and the up-regulation of the mRNA expression of nkaα3 and the overall protein abundance of Nkaα in response to acclimation to brackish water. Immunofluorescence microscopy revealed the presence of a sub-type of ionocyte, co-expressing Nkcc1 and Nkaα, near the base of the secondary lamellae in the gills of H. signifer acclimated to brackish water, but this type of ionocyte was absent from the gills of fish kept in fresh water. Hence, there could be a change in the function of the gills of H. signifer from salt absorption to salt excretion during brackish water acclimation in the absence of a functioning rectal gland.
机译:Himantura signifer是居住在东南亚河流中的淡水黄貂鱼。它可以在微咸水中生存,但不能在海水中生存。在微咸水中,它会部分变为尿渗透压,但是由于缺乏直肠腺体,它如何保持血浆对外界介质的离子性仍然是个谜。在这里,我们首次报告了Na + :K + :2Cl -共转运蛋白1(nkcc1)在淡水H中的表达。信号,以及其对咸水(盐度20)适应的适度上调(约2倍)。 H.signifer Nkcc1 N末端不存在与Ste20相关的富含脯氨酸丙氨酸的激酶和氧化应激反应激酶1相互作用位点,这表明应激激酶可能无法响应盐度变化而被有效激活。欧氏硬骨鱼。在微咸水中排盐过程中Nkcc1活性的增加会导致Na + 流入离子细胞,维持细胞内Na + 稳态需要Na的配合 + / K + -ATPase(Nka)。我们首次证明了在H.signifer的sign中nkaα1,nkaα2和nkaα3的表达,以及对咸水适应后,nkaα3的mRNA表达上调和Nkaα的总蛋白丰度。免疫荧光显微镜检查显示,在适应微咸水的H.signifer ill的次级片状细胞基部附近存在共表达Nkcc1和Nkaα的亚型离子细胞,但该类型的离子细胞却不存在。鱼放在淡水中。因此,在缺乏功能性直肠的情况下,在咸水适应过程中,H.signifer的ill的功能可能会从盐吸收变为盐排泄。

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