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离子缺乏环境诱导罗非鱼(莫桑比克罗非鱼)鳃线粒体丰富细胞中基底外侧氯通道(ClC-3样蛋白)的表达,以摄取氯离子。

Ion-deficient environment induces the expression of basolateral chloride channel, ClC-3-like protein, in gill mitochondrion-rich cells for chloride uptake of the tilapia Oreochromis mossambicus.

作者信息

Tang Cheng-Hao, Lee Tsung-Han

机构信息

Department of Life Sciences, National Chung-Hsing University, Taichung 402, Taiwan.

出版信息

Physiol Biochem Zool. 2011 Jan-Feb;84(1):54-67. doi: 10.1086/657161.

Abstract

Gill mitochondrion-rich (MR) cells contain different molecules to carry out functionally distinct mechanisms. To date, the putative mechanism of Cl(-) uptake through the basolateral chloride channel, however, is less understood. To clarify the Cl(-)-absorbing mechanism, this study explored the molecular and morphological alterations in branchial MR cells of tilapia acclimated to seawater (SW), freshwater (FW), and deionized water (DW). Scanning electron microscopic observations revealed that three subtypes of MR cells were exhibited in gill filament epithelia of tilapia. Furthermore, in DW-acclimated tilapia, the subtype I (ion-absorbing subtype) of MR cells predominantly occurred in gill filament as well as lamellar epithelia. Whole-mount double immunofluorescent staining revealed that branchial ClC-3-like protein and Na(+)/K(+)-ATPase (NKA), the basolateral marker of MR cells, were colocalized in tilapia. In SW-acclimated tilapia, all MR cells of gill filament epithelia exhibited faint fluorescence of ClC-3-like protein. In contrast, only some MR cells in gill filament epithelia of FW and DW tilapia expressed basolateral ClC-3-like protein; however, the fluorescence was more intense in FW and DW tilapia than in SW fish. In hyposmotic groups, the number of MR cells immunopositive for ClC-3-like protein was significantly higher in DW-exposed tilapia. Meanwhile, in gill lamellar epithelia of DW tilapia, all MR cells (subtype I) were ClC-3-like protein immunopositive. Double immunostaining of ClC-3-like protein and Na(+)/Cl(-) cotransporter (NCC) revealed that basolateral ClC-3-like protein and apical NCC were colocalized in some MR cells in FW and DW tilapia. Moreover, both mRNA and protein amounts of branchial ClC-3-like protein were significantly higher in DW-acclimated tilapia. To identify whether the expression of branchial ClC-3-like protein responded to changes in environmental [Cl(-)], tilapia were acclimated to artificial waters with normal [Na(+)]/[Cl(-)] (control), lower [Na(+)] (low Na), or lower [Cl(-)] (low Cl). Immunoblotting of crude membrane fractions for gill ClC-3-like protein showed that the protein abundance was evidently enhanced in tilapia acclimated to the low-Cl environment compared with the other groups. Our findings integrated morphological and functional classifications of ion-absorbing MR cells and indicated that ion-deficient water elevated the numbers of subtype I MR cells in both filament and lamellar epithelia of gills with positive ClC-3-like protein immunostaining and increased the expression levels of ClC-3-like protein. This study is the first to illustrate the exhibition of a basolateral chloride channel potentially responsible for Cl(-) absorption in the ion-absorbing subtype of gill MR cells of tilapia.

摘要

罗非鱼富含线粒体的(MR)细胞含有不同分子以执行功能上不同的机制。然而,迄今为止,通过基底外侧氯离子通道吸收氯离子的推定机制尚不清楚。为了阐明氯离子吸收机制,本研究探索了适应海水(SW)、淡水(FW)和去离子水(DW)的罗非鱼鳃部MR细胞的分子和形态学变化。扫描电子显微镜观察显示,罗非鱼鳃丝上皮中呈现出三种亚型的MR细胞。此外,在适应DW的罗非鱼中,MR细胞的I型(离子吸收亚型)主要出现在鳃丝以及鳃小片上皮中。整装双重免疫荧光染色显示,鳃部类似ClC-3的蛋白与MR细胞的基底外侧标志物钠钾ATP酶(NKA)在罗非鱼中共定位。在适应SW的罗非鱼中,鳃丝上皮的所有MR细胞对类似ClC-3的蛋白呈现微弱荧光。相比之下,在适应FW和DW的罗非鱼鳃丝上皮中,只有一些MR细胞表达基底外侧类似ClC-3的蛋白;然而,在适应FW和DW的罗非鱼中荧光比在适应SW的鱼中更强。在低渗组中,暴露于DW的罗非鱼中对类似ClC-3的蛋白免疫阳性的MR细胞数量显著更高。同时,在适应DW的罗非鱼鳃小片上皮中,所有MR细胞(I型)对类似ClC-3的蛋白免疫阳性。类似ClC-3的蛋白与钠氯共转运体(NCC)的双重免疫染色显示,基底外侧类似ClC-3的蛋白与顶端NCC在适应FW和DW的罗非鱼的一些MR细胞中共定位。此外,在适应DW的罗非鱼中,鳃部类似ClC-3的蛋白的mRNA和蛋白量均显著更高。为了确定鳃部类似ClC-3的蛋白的表达是否对环境中氯离子浓度的变化有反应,将罗非鱼适应含有正常钠氯比(对照)、较低钠浓度(低钠)或较低氯离子浓度(低氯)的人工水。对鳃部类似ClC-3的蛋白进行粗膜组分的免疫印迹分析显示,与其他组相比,适应低氯环境的罗非鱼中该蛋白丰度明显增强。我们的研究结果整合了离子吸收性MR细胞的形态学和功能分类,并表明缺离子水增加了鳃丝和鳃小片上皮中I型MR细胞的数量,这些细胞对类似ClC-3的蛋白免疫染色呈阳性,并增加了类似ClC-3的蛋白的表达水平。本研究首次阐明了基底外侧氯离子通道在罗非鱼鳃部MR细胞的离子吸收亚型中可能负责氯离子吸收的表现。

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