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Potassium Regulation in Medaka (Oryzias latipes) Larvae Acclimated to Fresh Water: Passive Uptake and Active Secretion by the Skin Cells

机译:适应淡水的Medaka(Oryzias latipes)幼虫对钾的调节:皮肤细胞的被动摄取和主动分泌

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摘要

Molecular mechanisms of Na+, Cl, and Ca2+ regulation in ionocytes of fish have been well investigated. However, the regulatory mechanism of K+ in fishes has been largely unknown. In this study, we investigated the mechanism of K+ regulation in medaka larvae acclimated to fresh water. Using a scanning ion-selective electrode technique (SIET) to measure the K+ fluxes at skin cells, significant K+ effluxes were found at ionocytes; in contrast, significant K+ influxes were found at the boundaries between keratinocytes. High K+ water (HK) acclimation induced the K+ effluxes at ionocytes and suppressed the K+ influxes at keratinocytes. The K+ effluxes of ionocytes were suppressed by VU591, bumetanide and ouabain. The K+ influxes of keratinocytes were suppressed by TAP. In situ hybridization analysis showed that mRNA of ROMKa was expressed by ionocytes in the skin and gills of medaka larvae. Quantitative PCR showed that mRNA levels of ROMKa and NKCC1a in gills of adult medaka were upregulated after HK acclimation. This study suggests that medaka obtain K+ through a paracellular pathway between keratinocytes and extrude K+ through ionocytes; apical ROMKa and basolateral NKCC1a are involved in the K+ secretion by ionocytes.
机译:对鱼类离子细胞中Na + ,Cl -和Ca 2 + 调控的分子机理进行了深入研究。然而,在鱼类中K + 的调控机制尚不清楚。在本研究中,我们研究了淡水青aka幼虫中K + 调控的机制。使用扫描离子选择电极技术(SIET)测量皮肤细胞的K + 通量,在离子细胞中发现了显着的K + 外流。相反,在角质形成细胞之间的边界处发现大量的K + 流入。高K + 水(HK)适应诱导离子细胞的K + 流出,并抑制角质形成细胞的K + 流入。 VU591,布美他尼和哇巴因抑制了离子细胞的K + 流出。 TAP抑制了角质形成细胞的K + 流入。原位杂交分析表明,Ka中幼虫皮肤和g中的离子细胞表达了ROMKa的mRNA。定量PCR表明,HK适应后,成年的ROMKa和NKCC1a的mRNA水平上调。这项研究表明,aka香通过角质形成细胞之间的细胞旁途径获得K + ,并通过离子细胞挤出K + 。顶端ROMKa和基底外侧NKCC1a参与离子细胞分泌K +

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