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首页> 外文期刊>American Journal of Physiology >Carbonic anhydrase 2-like a and 15a are involved in acid-base regulation and Na+ uptake in zebrafish H+-ATPase-rich cells.
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Carbonic anhydrase 2-like a and 15a are involved in acid-base regulation and Na+ uptake in zebrafish H+-ATPase-rich cells.

机译:碳酸酐酶2-a和15a参与斑马鱼富含H + -ATPase的细胞的酸碱调节和Na +吸收。

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摘要

H(+)-ATPase-rich (HR) cells in zebrafish gills/skin were found to carry out Na+ uptake and acid-base regulation through a mechanism similar to that which occurs in mammalian proximal tubular cells. However, the roles of carbonic anhydrases (CAs) in this mechanism in zebrafish HR cells are still unclear. The present study used a functional genomic approach to identify 20 CA isoforms in zebrafish. By screening with whole mount in situ hybridization, only zca2-like a and zca15a were found to be expressed in specific groups of cells in zebrafish gills/skin, and further analyses by triple in situ hybridization and immunocytochemistry demonstrated specific colocalizations of the two zca isoforms in HR cells. Knockdown of zca2-like a caused no change in and knockdown of zca15a caused an increase in H+ activity at the apical surface of HR cells at 24 h postfertilization (hpf). Later, at 96 hpf, both the zca2-like a and zca15a morphants showed decreased H+ activity and increased Na+ uptake, with concomitant upregulation of znhe3b and downregulation of zatp6v1a (H+-ATPase A-subunit) expressions. Acclimation to both acidic and low-Na+ fresh water caused upregulation of zca15a expression but did not change the zca2-like a mRNA level in zebrafish gills. These results provide molecular physiological evidence to support the roles of these two zCA isoforms in Na+ uptake and acid-base regulation mechanisms in zebrafish HR cells.
机译:发现斑马鱼g /皮肤中富含H(+)-ATPase的(HR)细胞通过类似于哺乳动物近端肾小管细胞的机制进行Na +吸收和酸碱调节。然而,碳酸酐酶(CAs)在斑马鱼HR细胞中的这种机制的作用仍不清楚。本研究使用功能基因组学方法鉴定斑马鱼中的20种CA同工型。通过全安装原位杂交筛选,仅在斑马鱼腮/皮肤中特定的细胞组中表达了zca2-like a和zca15a,并且通过三原位杂交和免疫细胞化学的进一步分析表明了两种zca亚型的特定共定位在HR细胞中。敲除zca2-like a不会引起任何变化,敲除zca15a会导致在受精后24 h(hpf)HR细胞的顶表面H +活性增加。后来,在96 hpf时,zca2-like a和zca15a突变体均显示出H +活性降低和Na +吸收增加,同时znhe3b上调和zatp6v1a(H + -ATPase A-亚基)表达下调。适应酸性和低Na +淡水均引起zca15a表达上调,但并未改变斑马鱼g中的zca2-like mRNA水平。这些结果提供了分子生理学证据,以支持这两种zCA亚型在斑马鱼HR细胞中Na +吸收和酸碱调节机制中的作用。

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