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Chloride channel ClC-3 in gills of the euryhaline teleost, Tetraodon nigroviridis: expression, localization and the possible role of chloride absorption

机译:广盐性硬骨鱼(Tetraodon nigroviridis)鳃中的氯离子通道ClC-3:表达,定位和氯离子吸收的可能作用

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摘要

Previous studies have reported the mechanisms of ion absorption and secretion by diverse membrane transport proteins in gills of various teleostean species. To date, however, the chloride channel expressed in the basolateral membrane of mitochondrionrich (MR) cells for Cl-uptake in freshwater (FW) fish is still unknown. In this study, the combination of bioinformatics tools [i.e. National Center for Biotechnology Information (NCBI) database, Tetraodon nigroviridis (spotted green pufferfish) genome database (Genoscope), BLAT and BLASTn] were used to identify the gene of ClC-3 (TnClC-3), a member of the CLC chloride channel family in the T. nigroviridis genome. RT-PCR analysis revealed that the gene encoding for the ClC-3 protein was widely expressed in diverse tissues (i.e. gill, kidney, intestine, liver and brain) of FW- and seawater (SW)-acclimated pufferfish. In whole-mount double immunofluorescent staining, branchial ClC-3-like immunoreactive protein was localized to the basolateral membrane of Na(+)/K(+)-ATPase (NKA) immunoreactive cells in both the FW- and SW-acclimated pufferfish. In response to salinity, the levels of transcript of branchial TnClC-3 were similar between FW and SW fish. Moreover, the membrane fraction of ClC-3-like protein in gills was 2.7-fold higher in FW compared with SW pufferfish. To identify whether the expression of branchial ClC-3-like protein specifically responded to lower environmental [Cl(-)], the pufferfish were acclimated to artificial waters either with a normal (control) or lower Cl(-) concentration (low-Cl). Immunoblotting of membrane fractions of gill ClC-3-like protein showed the expression was about 4.3-fold higher in pufferfish acclimated to the low-Cl environment than in the control group. Furthermore, branchial ClC-3-like protein was rapidly elevated in response to acute changes of environmental salinity or [Cl(-)]. Taken together, pufferfish ClC-3-like protein was expressed in the basolateral membrane of gill MR cells, and the protein amounts were stimulated by hyposmotic and low-Cl environments. The enhancement of ClC-3-like protein may trigger the step of basolateral Cl-absorption of the epithelium to carry out iono- and osmoregulatory functions of euryhaline pufferfish gills.
机译:先前的研究已经报道了各种硬骨鱼种类的g中各种膜转运蛋白对离子的吸收和分泌的机制。然而,迄今为止,仍不清楚线粒体(MR)细胞的基底外侧膜中表达的氯通道是否能吸收淡水(FW)鱼中的Cl。在这项研究中,生物信息学工具的组合[即国家生物技术信息中心(NCBI)数据库,黑背河豚(斑点绿河豚)基因组数据库(Genoscope),BLAT和BLASTn]用于鉴定CLC氯通道成员ClC-3(TnClC-3)的基因。 T. nigroviridis基因组中的家族。 RT-PCR分析表明,编码ClC-3蛋白的基因在适应FW和海水(SW)的河豚的不同组织(即g,肾,肠,肝和脑)中广泛表达。在完整的双免疫荧光染色中,分支的ClC-3样免疫反应蛋白位于FW和SW适应的河豚体内Na(+)/ K(+)-ATPase(NKA)免疫反应细胞的基底外侧膜中。响应盐度,FW和SW鱼之间的分支TnClC-3转录水平相似。而且,与SW河豚相比,F中ClC-3样蛋白的膜部分在FW中高2.7倍。为了确定分支ClC-3样蛋白的表达是否对较低的环境[Cl(-)]特异性应答,将河豚适应于正常(对照)或较低Cl(-)浓度(低Cl )。 illClC-3样蛋白膜级分的免疫印迹显示,适应低氯环境的河豚中的表达比对照组高约4.3倍。此外,响应于环境盐度或[Cl(-)]的急性变化,分支ClC-3-样蛋白迅速升高。两者合计,在cells MR细胞的基底外侧膜中表达了河豚ClC-3样蛋白,并且该蛋白的量受到低渗和低Cl环境的刺激。 ClC-3样蛋白的增强可能触发基底外侧上皮对Cl的吸收,从而实现河豚ha的电离和渗透调节功能。

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