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Glucocorticoid Receptor but Not Mineralocorticoid Receptor Mediates Cortisol Regulation of Epidermal Ionocyte Development and Ion Transport in Zebrafish (Danio Rerio)

机译:糖皮质激素受体而不是盐皮质激素受体介导斑马鱼中表皮离子细胞发育和离子转运的皮质醇调节(达尼奥·里约)

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摘要

Cortisol is the major endogenous glucocorticoid (GC) both in human and fish, mediated by corticosteroid receptors. Due to the absence of aldosterone production in teleost fish, cortisol is also traditionally accepted to function as mineralocorticoid (MC); but whether it acts through the glucocorticoid receptor (GR) or the mineralocorticoid receptor (MR) remains a subject of debate. Here, we used loss-of-function and rescue assays to determine whether cortisol affects zebrafish epidermal ionocyte development and function via the GR and/or the MR. GR knockdown morphants displayed a significant decrease in the major ionocytes, namely Na+-K+-ATPase-rich cells (NaRCs) and H+-ATPase-rich cells (HRCs), as well as other cells, including epidermal stem cells (ESCs), keratinocytes, and mucus cells; conversely, cell numbers were unaffected in MR knockdown morphants. In agreement, GR morphants, but not MR morphants, exhibited decreased NaRC-mediated Ca2+ uptake and HRC-mediated H+ secretion. Rescue via GR capped mRNA injection or exogenous cortisol incubation normalized the number of epidermal ionocytes in GR morphants. We also provide evidence for GR localization in epidermal cells. At the transcript level, GR mRNA is ubiquitously expressed in gill sections and present in both NaRCs and HRCs, supporting the knockdown and functional assay results in embryo. Altogether, we have provided solid molecular evidence that GR is indeed present on ionocytes, where it mediates the effects of cortisol on ionocyte development and function. Hence, cortisol-GR axis performs the roles of both GC and MC in zebrafish skin and gills.
机译:皮质醇是人类和鱼类中主要的内源性糖皮质激素(GC),由皮质类固醇受体介导。由于硬骨鱼中不存在醛固酮的产生,因此传统上也认为皮质醇起盐皮质激素的作用。但是它是通过糖皮质激素受体(GR)还是盐皮质激素受体(MR)发挥作用仍是一个争论的话题。在这里,我们使用了功能丧失和拯救试验来确定皮质醇是否通过GR和/或MR影响斑马鱼表皮离子细胞的发育和功能。 GR击倒的morphant显着减少主要离子细胞,即Na + -K + -ATPase-rich细胞(NaRCs)和H + -富含ATPase的细胞(HRC),以及其他细胞,包括表皮干细胞(ESC),角质形成细胞和粘液细胞;相反,在MR敲除吗啡中,细胞数量不受影响。一致的是,GR morphant而不是MR morphant表现出NaRC介导的Ca 2 + 吸收减少和HRC介导的H + 分泌。通过GR加帽的mRNA注射或外源皮质醇孵育进行的抢救使GR morphant中的表皮离子细胞数量正常化。我们还提供了GR在表皮细胞中定位的证据。在转录本水平上,GR mRNA在g区域无处不在表达,并同时存在于NaRC和HRC中,支持胚胎中的敲除和功能测定结果。总而言之,我们提供了确凿的分子证据,表明GR确实存在于离子细胞中,它介导了皮质醇对离子细胞发育和功能的影响。因此,皮质醇-GR轴在斑马鱼的皮肤和腮中同时扮演了GC和MC的角色。

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