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广盐性板鳃亚类动物中假定的钠吸收机制存在于狭盐性海洋板鳃亚类动物棘鲛的鳃中。

The putative mechanism of Na(+) absorption in euryhaline elasmobranchs exists in the gills of a stenohaline marine elasmobranch, Squalus acanthias.

作者信息

Choe Keith P, Edwards Susan L, Claiborne James B, Evans David H

机构信息

Department of Zoology, University of Florida, Gainesville, FL 32611, USA.

出版信息

Comp Biochem Physiol A Mol Integr Physiol. 2007 Feb;146(2):155-62. doi: 10.1016/j.cbpa.2006.09.027. Epub 2006 Dec 1.

Abstract

We recently cloned an NHE3 orthologue from the gills of the euryhaline Atlantic stingray (Dasyatis sabina), and generated a stingray NHE3 antibody to unequivocally localize the exchanger to the apical side of epithelial cells that are rich with Na(+)/K(+)-ATPase (A MRC). We also demonstrated an increase in NHE3 expression when stingrays are in fresh water, suggesting that NHE3 is responsible for active Na(+) absorption. However, the vast majority of elasmobranchs are only found in marine environments. In the current study, immunohistochemistry with the stingray NHE3 antibody was used to localize the exchanger in the gills of the stenohaline marine spiny dogfish shark (Squalus acanthias). NHE3 immunoreactivity was confined to the apical side of cells with basolateral Na(+)/K(+)-ATPase and was excluded from cells with high levels of vacuolar H(+)-ATPase. Western blots detected a single protein of 88 kDa in dogfish gills, the same size as NHE3 in stingrays and mammals. These immunological data demonstrate that the putative cell type responsible for active Na(+) absorption in euryhaline elasmobranchs is also present in stenohaline marine elasmobranchs, and suggest that the inability of most elasmobranchs to survive in fresh water is not due to a lack of the gill ion transporters for Na(+) absorption.

摘要

我们最近从广盐性的大西洋黄貂鱼(Dasyatis sabina)的鳃中克隆了一种NHE3同源物,并制备了一种黄貂鱼NHE3抗体,以明确将该交换体定位到富含Na(+)/K(+)-ATP酶(一种MRC)的上皮细胞的顶端。我们还证明,当黄貂鱼处于淡水中时,NHE3表达增加,这表明NHE3负责主动吸收Na(+)。然而,绝大多数软骨鱼仅生活在海洋环境中。在本研究中,使用黄貂鱼NHE3抗体进行免疫组织化学,以将该交换体定位在狭盐性海洋棘鲨(Squalus acanthias)的鳃中。NHE3免疫反应性局限于具有基底外侧Na(+)/K(+)-ATP酶的细胞的顶端,并且被排除在具有高水平液泡H(+)-ATP酶的细胞之外。蛋白质印迹法在棘鲨的鳃中检测到一种88 kDa的单一蛋白质,其大小与黄貂鱼和哺乳动物中的NHE3相同。这些免疫学数据表明,在广盐性软骨鱼中负责主动吸收Na(+)的假定细胞类型在狭盐性海洋软骨鱼中也存在,并且表明大多数软骨鱼无法在淡水中生存不是由于缺乏用于吸收Na(+)的鳃离子转运蛋白。

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