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SLC26阴离子转运体在斑马鱼(Danio rerio)幼体氯离子摄取中的作用。

The involvement of SLC26 anion transporters in chloride uptake in zebrafish (Danio rerio) larvae.

作者信息

Bayaa M, Vulesevic B, Esbaugh A, Braun M, Ekker M E, Grosell M, Perry S F

机构信息

Department of Biology and Centre for Advanced Research in Environmental Genomics, University of Ottawa, Ottawa, Ontario K1N 6N5, Canada.

出版信息

J Exp Biol. 2009 Oct;212(Pt 20):3283-95. doi: 10.1242/jeb.033910.

Abstract

After demonstrating phylogenetic relatedness to orthologous mammalian genes, tools were developed to investigate the roles of three members (A3, A4 and A6c) of the SLC26 anion exchange gene family in Cl- uptake and HCO3 excretion in embryos and larvae of zebrafish (Danio rerio). Whole-mount in situ hybridization revealed the presence of SLC26 mRNA in gill primordia, mesonephros and heart (slc26a3 and a4 only) at 5-9 days postfertilization (d.p.f.). SLC26A3 protein was highly expressed in lateral line neuromasts and within the gill, was localized to a sub-population of epithelial cells, which often (but not always) coexpressed Na+/K+-ATPase. SLC26 mRNA levels increased with developmental age, peaking at 5-10 d.p.f.; the largest increases in rates of Cl- uptake (JinCl-) preceded the mRNA spike, occurring at 2-5 d.p.f. Raising zebrafish in water with a low [Cl-] caused marked increases in JinCl- at 3-10 d.p.f. and was associated with increased levels of SLC26 mRNA. Raising fish in water of high [Cl-] was without effect on JinCl- or SLC26 transcript abundance. Selective gene knockdown using morpholino antisense oligonucleotides demonstrated a significant role for SLC26A3 in Cl- uptake in larval fish raised in control water and roles for A3, A4 and A6c in fish raised in water with low [Cl-]. Prolonged (7 days) or acute (24 h) exposure of fish to elevated (2 or 5 mmol l(-1)) ambient [HCO3-] caused marked increases in Cl- uptake when determined in water of normal [HCO3-] that were accompanied by elevated levels of SLC26 mRNA. The increases in JinCl- associated with high ambient [HCO3-] were not observed in the SLC26 morphants (significant only at 5 mmol l(-1) HCO3- for A4 and 2 mmol l(-1) HCO3- for A6c). Net base excretion was markedly inhibited in the slc26a3 and a6c morphants thereby implicating these genes in Cl-/HCO3- exchange. The results suggest that under normal conditions, Cl- uptake in zebrafish larvae is mediated by SLC26A3 Cl-/HCO3- exchangers but under conditions necessitating higher rates of high affinity Cl- uptake, SlC26A4 and SLC26A6c may assume a greater role.

摘要

在证明与直系同源哺乳动物基因存在系统发育相关性之后,开发了一些工具来研究SLC26阴离子交换基因家族的三个成员(A3、A4和A6c)在斑马鱼(Danio rerio)胚胎和幼体中氯离子摄取和碳酸氢根排泄中的作用。全胚胎原位杂交显示,受精后5至9天(d.p.f.),鳃原基、中肾和心脏(仅slc26a3和a4)中存在SLC26 mRNA。SLC26A3蛋白在侧线神经丘和鳃中高度表达,定位于上皮细胞亚群,这些上皮细胞通常(但并非总是)共表达Na+/K+-ATP酶。SLC26 mRNA水平随发育年龄增加,在5至10 d.p.f.达到峰值;氯离子摄取速率(JinCl-)的最大增加先于mRNA峰值,出现在2至5 d.p.f.。在低[Cl-]水中饲养斑马鱼会导致3至10 d.p.f.时JinCl-显著增加,并与SLC26 mRNA水平升高相关。在高[Cl-]水中饲养鱼对JinCl-或SLC26转录本丰度没有影响。使用吗啉代反义寡核苷酸进行选择性基因敲低表明,SLC26A3在对照水中饲养的幼鱼氯离子摄取中起重要作用,而A3、A4和A6c在低[Cl-]水中饲养的鱼中起作用。将鱼长时间(7天)或急性(24小时)暴露于升高的(2或5 mmol l(-1))环境[HCO3-]中,当在正常[HCO3-]的水中测定时,会导致氯离子摄取显著增加,同时SLC26 mRNA水平升高。在SLC26 morphants中未观察到与高环境[HCO3-]相关的JinCl-增加(仅在5 mmol l(-1) HCO3-时A4显著,在2 mmol l(-1) HCO3-时A6c显著)。slc26a3和a6c morphants中的净碱排泄明显受到抑制,从而表明这些基因参与Cl-/HCO3-交换。结果表明,在正常条件下,斑马鱼幼体中的氯离子摄取由SLC26A3 Cl-/HCO3-交换体介导,但在需要更高亲和力氯离子摄取速率的条件下,SlC26A4和SLC26A6c可能发挥更大作用。

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