首页> 外文期刊>American Journal of Physiology >Expression regulation of Na+-K+-ATPase alpha1-subunit subtypes in zebrafish gill ionocytes.
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Expression regulation of Na+-K+-ATPase alpha1-subunit subtypes in zebrafish gill ionocytes.

机译:斑马鱼鳃离子细胞中Na + -K-atpaseα1-亚基亚型的表达调控。

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摘要

In zebrafish (Danio rerio), six distinct Na+-K+-ATPase (NKA) alpha1-subunit genes have been identified, and four of them, zatp1a1a.1, zatp1a1a.2, zatp1a1a.4, and zatp1a1a.5, are expressed in embryonic skin where different types of ionocytes appear. The present study attempted to test a hypothesis of whether these NKA alpha1 paralogues are specifically expressed and function in respective ionocytes. Double fluorescence in situ hybridization analysis demonstrated the specific expression of zatp1a1a.1, zatp1a1a.2, and zatp1a1a.5 in NKA-rich (NaR) cells, Na+-Cl- cotransporter (NCC)-expressing cells, and H+-ATPase-rich (HR) cells, respectively, based on the colocalization of the three NKA alpha1 genes with marker genes of the respective ionocytes (epithelial Ca2+ channel in NaR cells; NCC in NCC cells; and H+-ATPase and Na+/H+ exchanger 3b in HR cells). The mRNA expression (by real-time PCR) of zatp1a1a.1, zatp1a1a.2, and zatp1a1a.5 were, respectively, upregulated by low-Ca2+, low-Cl-, and low-Na+ freshwater, which had previously been reported to stimulate uptake functions of Ca2+, Cl-, and Na+. However, zatp1a1a.4 was not colocalized with any of the three types of ionocytes, nor did its mRNA respond to the ambient ions examined. Taken together, zATP1a1a.1, zATP1a1a.2, and zATP1a1a.5 may provide driving force for Na+-coupled cotransporter activity specifically in NaR, NCC, and HR cells, respectively.
机译:在斑马鱼(Danio Rerio)中,已经鉴定了六种不同的Na + -k + -AtPase(NKA)α1-亚基基因,其中四个Zatp1a1a.1,Zatp1a1a.2,Zatp1a1a.4和Zatp1a1a.5中鉴定出来出现不同类型的离子细胞的胚胎皮肤。本研究试图测试这些NKAα1个子级糖醇是否特异性表达和在各自的离子细胞中起作用的假设。原位杂交分析的双重荧光证明了ZATP1A1A.1,ZATP1A1A.2和ZATP1A1.5在NKA的(NAR)细胞中的特异性表达,NA + -Cl-COTRANSPORTER(NCC) - 表达细胞,H + -ATPase-Rich (HR)细胞分别基于具有相应离子细胞的标记基因的三个NKAα1基因的细胞化(NAR细胞中的上皮CA2 +通道; NCC细胞中的NCC; H + -ATP酶和HR细胞中的Na + / H +交换器3b )。 ZATP1A1A.1,ZATP1A1A.2和ZATP1A1A.5的mRNA表达(通过实时PCR)分别由先前报告的低CA2 +,低CL-和低NA +淡水上调刺激Ca2 +,Cl-和Na +的摄取功能。然而,Zatp1a1a.4没有与三种类型的离子细胞中的任何一种粘接,也不是其mRNA对所检查的环境离子进行响应。 ZATP1A1A.1,ZATP1A1A.2和ZATP1A1A.5可以分别为NAR,NCC和HR细胞中特别提供NA +耦合的COTRANSPORPER活性的驱动力。

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