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水通道蛋白水通道在极化肝细胞系WIF-B中的表达及亚细胞定位

Expression and subcellular localization of aquaporin water channels in the polarized hepatocyte cell line, WIF-B.

作者信息

Gradilone Sergio A, Tietz Pamela S, Splinter Patrick L, Marinelli Raúl A, LaRusso Nicholas F

机构信息

Instituto de Fisiología Experimental, Consejo Nacional de Investigaciones Científicas y Técnicas (CONICET), Facultad de Ciencias Bioquímicas y Farmacéuticas, Universidad Nacional de Rosario, 2000 Rosario, Santa Fe, Argentina.

出版信息

BMC Physiol. 2005 Aug 18;5:13. doi: 10.1186/1472-6793-5-13.

Abstract

BACKGROUND

Recent data suggest that canalicular bile secretion involves selective expression and coordinated regulation of aquaporins (AQPs), a family of water channels proteins. In order to further characterize the role of AQPs in this process, an in vitro cell system with retained polarity and expression of AQPs and relevant solute transporters involved in bile formation is highly desirable. The WIF-B cell line is a highly differentiated and polarized rat hepatoma/human fibroblast hybrid, which forms abundant bile canalicular structures. This cell line has been reported to be a good in vitro model for studying hepatocyte polarity.

RESULTS

Using RT-PCR, immunoblotting and confocal immunofluorescence, we showed that WIF-B cells express the aquaporin water channels that facilitate the osmotically driven water movements in the liver, i.e. AQP8, AQP9, and AQP0; as well as the key solute transporters involved in the generation of canalicular osmotic gradients, i.e., the bile salt export pump Bsep, the organic anion transporter Mrp2 and the chloride bicarbonate exchanger AE2. The subcellular localization of the AQPs and the solute transporters in WIF-B cells was similar to that in freshly isolated rat hepatocytes and in intact liver. Immunofluorescent costaining studies showed intracellular colocalization of AQP8 and AE2, suggesting the possibility that these transporters are expressed in the same population of pericanalicular vesicles.

CONCLUSION

The hepatocyte cell line WIF-B retains the expression and subcellular localization of aquaporin water channels as well as key solute transporters for canalicular bile secretion. Thus, these cells can work as a valuable tool for regulatory and mechanistic studies of the biology of bile formation.

摘要

背景

近期数据表明,胆小管胆汁分泌涉及水通道蛋白(AQP)家族(一类水通道蛋白)的选择性表达和协同调节。为了进一步明确水通道蛋白在此过程中的作用,非常需要一种保留极性且表达水通道蛋白以及参与胆汁形成的相关溶质转运体的体外细胞系统。WIF - B细胞系是一种高度分化且极化的大鼠肝癌/人成纤维细胞杂交细胞系,可形成丰富的胆小管结构。据报道,该细胞系是研究肝细胞极性的良好体外模型。

结果

通过逆转录聚合酶链反应(RT - PCR)、免疫印迹和共聚焦免疫荧光技术,我们发现WIF - B细胞表达促进肝脏中渗透驱动水运动的水通道蛋白,即水通道蛋白8(AQP8)、水通道蛋白9(AQP9)和水通道蛋白0(AQP0);以及参与胆小管渗透梯度形成的关键溶质转运体,即胆盐输出泵(Bsep)、有机阴离子转运体(Mrp2)和氯碳酸氢根交换体(AE2)。水通道蛋白和溶质转运体在WIF - B细胞中的亚细胞定位与新鲜分离的大鼠肝细胞和完整肝脏中的相似。免疫荧光共染色研究显示AQP8和AE2在细胞内共定位,提示这些转运体可能在同一群胆小管周围小泡中表达。

结论

肝细胞系WIF - B保留了水通道蛋白水通道以及胆小管胆汁分泌关键溶质转运体的表达和亚细胞定位。因此,这些细胞可作为研究胆汁形成生物学的调节和机制的有价值工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/885b/1208912/8aaec7fe4d70/1472-6793-5-13-1.jpg

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