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首页> 外文期刊>The Journal of Experimental Biology >The role of an ancestral hyperpolarization-activated cyclic nucleotide-gated K+ channel in branchial acid-base regulation in the green crab, Carcinus maenas
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The role of an ancestral hyperpolarization-activated cyclic nucleotide-gated K+ channel in branchial acid-base regulation in the green crab, Carcinus maenas

机译:祖先超极化激活的环状核苷酸门控的K +通道在绿蟹Carcinus maenas的分支酸碱调节中的作用

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Numerous electrophysiological studies on branchial K+ transport in brachyuran crabs have established an important role for potassium channels in osmoregulatory ion uptake and ammonia excretion in the gill epithelium of decapod crustaceans. However, hardly anything is known of the actual nature of these channels in crustaceans. In the present study, the identification of a hyperpolarization-activated cyclic nucleotide-gated potassium channel (HCN) in the transcriptome of the green crab Carcinus maenas and subsequent performance of quantitative real-time PCR revealed the ubiquitous expression of this channel in this species. Even though mRNA expression levels in the cerebral ganglion were found to be approximately 10 times higher compared with all other tissues, posterior gills still expressed significant levels of HCN, indicating an important role for this transporter in branchial ion regulation. The relatively unspecific K+-channel inhibitor Ba2+, as well as the HCN-specific blocker ZD7288, as applied in gill perfusion experiments and electrophysiological studies employing the split gill lamellae revealed the presence of at least two different K+/NH4+-transporting structures in the branchial epithelium of C. maenas. Furthermore, HCN mRNA levels in posterior gill 7 decreased significantly in response to the respiratory or metabolic acidosis that was induced by acclimation of green crabs to high environmental P-CO2 and ammonia, respectively. Consequently, the present study provides first evidence that HCN-promoted NH4+ epithelial transport is involved in both branchial acid-base and ammonia regulation in an invertebrate.
机译:短臂梭蟹中分支K +转运的许多电生理学研究已经确定了十足类甲壳动物g上皮中的钾离子通道在渗透调节性离子吸收和氨排泄中起着重要作用。但是,几乎没有人知道甲壳动物中这些通道的实际性质。在本研究中,绿色螃蟹蟹的转录组中超极化激活的环状核苷酸门控钾通道(HCN)的鉴定和定量实时PCR的后续性能揭示了该通道在该物种中的普遍表达。尽管发现脑神经节中的mRNA表达水平比所有其他组织高约10倍,但后g仍然表达显着的HCN水平,表明该转运蛋白在分支离子调节中起着重要作用。在g灌流实验和采用分裂g片的电生理研究中应用的相对非特异性的K +通道抑制剂Ba2 +以及HCN特异性阻滞剂ZD7288揭示了branch中至少存在两种​​不同的K + / NH4 +转运结构秀丽隐杆线虫的上皮。此外,响应于呼吸蟹或代谢性酸中毒,后that 7中的HCN mRNA水平显着下降,这是由于青蟹分别适应高环境P-CO2和氨引起的。因此,本研究提供了第一个证据,即无脊椎动物中HCN促进的NH4 +上皮运输与分支酸碱和氨的调节有关。

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