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Hydrogen sulfide inhibits Na+ uptake in larval zebrafish, Danio rerio

机译:硫化氢抑制幼虫斑马鱼的Na +摄取,Danio Rerio

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The present study investigated the role of hydrogen sulfide (H2S) in regulating Na+ uptake in larval zebrafish, Danio rerio. Waterborne treatment of larvae at 4 days post-fertilization (dpf) with Na2S or GYY-4137 (chemicals known to generate H2S) significantly reduced Na+ uptake. Exposure of larvae to water enriched with NaCl (1 mM NaCl) caused a pronounced reduction in Na+ uptake which was prevented by pharmacological inhibition of cystathionine beta-synthase (CBS) or cystathionine gamma-lyase (CSE), two key enzymes involved in the endogenous synthesis of H2S. Furthermore, translational gene knockdown of CSE and CBSb significantly increased the basal rate of Na+ uptake. Waterborne treatment with Na2S significantly decreased whole-body acid excretion and reduced Na+ uptake in larval zebrafish preexposed to acidic (pH 4.0) water (a condition shown to promote Na+ uptake via Na+-H+-exchanger 3b, NHE3b). However, Na2S did not affect Na+ uptake in larvae depleted of NHE3b-containing ionocytes (HR cells) after knockdown of transcription factor glial cell missing 2 (gcm2) in which Na+ uptake occurs predominantly via Na+-Cl- co-transporter (NCC)-containing cells. These observations suggest that Na+ uptake via NHE3b, but not NCC, is regulated by H2S. Whole-mount immunohistochemistry demonstrated that ionocytes expressing NHE3b also express CSE. These data suggests a physiologically relevant role of H2S as a mechanism to lower Na+ uptake in zebrafish larvae, probably through its inhibitory action on NHE3b.
机译:本研究研究了硫化氢(H2S)在幼虫斑马鱼,Danio Rerio调节Na +摄取的作用。用Na 2 S或Gyy-4137(已知为H2S的化学物质)的施肥后4天幼虫(DPF)的水上处理显着降低Na +摄取。幼虫暴露于富含NaCl(1mM NaCl)的水,导致Na +摄取的显着还原,所述Na +摄取是通过胱硫胺β-合酶(CBS)或胱硫胺γ-裂解酶(CSE)的药理学抑制,其涉及内源性的两个关键酶合成H2S。此外,CSE和CBSB的平移基因敲低显着增加了Na +摄取的基础速率。用Na2s的水性处理显着降低全体酸排泄并在幼虫斑马鱼中降低了酸性(pH4.0)水(通过Na + -H + -exchanger 3b,NHE3b促进Na +摄取的条件)。然而,在转录因子胶质细胞缺失2(GCM2)的敲除后,Na2s在含NHE3B的离子细胞(HR细胞)中缺乏NHE3B的离子细胞(HR细胞),其中Na +摄取主要通过Na + -Cl-转运蛋白(NCC) - 含细胞。这些观察结果表明,NA +通过NHE3B的摄取,但不是NCC,由H2S调节。全山免疫组织化学证明了表达NHE3B的离子细胞也表达CSE。这些数据表明,H2S作为斑马鱼幼虫降低Na +摄取的机制的生理学上相关的作用,可能是通过其对NHE3B的抑制作用。

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