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首页> 外文期刊>American Journal of Physiology >Downregulated in adenoma and putative anion transporter are regulated by CFTR in cultured pancreatic duct cells.
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Downregulated in adenoma and putative anion transporter are regulated by CFTR in cultured pancreatic duct cells.

机译:在培养的胰管细胞中,CFTR调节了腺瘤和假定的阴离子转运蛋白的下调。

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The mechanism of the pancreatic ductal HCO secretion defect in cystic fibrosis (CF) is not well defined. However, a lack of apical Cl(-)/HCO exchange may exist in CF. To test this hypothesis, we examined the expression of Cl(-)/HCO exchangers in cultured pancreatic duct epithelial cells with physiological features prototypical of CF [CFPAC-1 cells lacking a functional CF transmembrane conductance regulator (CFTR)] or normal duct cells (CFPAC-1 cells transfected with functional wild-type CFTR, CFPAC-WT). Cl(-)/HCO exchange activity, assayed with the pH-sensitive dye 2',7'-bis(2-carboxyethyl)-5(6)-carboxyfluorescein in cells grown on coverslips, increased about twofold in cells transfected with functional CFTR. This correlated with increased apical (36)Cl influx in cells expressing functional CFTR and grown on permeable support. Northern hybridizations indicated the induction of downregulated in adenoma (DRA) in cells expressing functional CFTR. The expression of putative anion transporter PAT1 also increased significantly in cells expressing functional CFTR. DRA was detected at high levels in native mouse pancreas by Northern hybridization and localized to the apical domain of the duct cells by immunohistochemical studies. In conclusion, CFTR upregulates DRA and PAT1 expression in cultured pancreatic duct cells. We propose that the pancreatic HCO secretion defect in CF patients is partly due to the downregulation of apical Cl(-)/HCO exchange activity mediated by DRA (and possibly PAT1).
机译:囊性纤维化(CF)中胰腺导管HCO分泌缺陷的机制尚未明确。但是,CF中可能缺少根尖的Cl(-)/ HCO交换。为了验证这一假设,我们检查了具有生理特征的CF [CFPAC-1细胞缺乏功能性CF跨膜电导调节剂(CFTR)]或正常导管细胞的培养胰腺导管上皮细胞中Cl(-)/ HCO交换子的表达。用功能性野生型CFTR(CFPAC-WT)转染的CFPAC-1细胞。在盖玻片上生长的细胞中,用pH敏感染料2',7'-双(2-羧乙基)-5(6)-羧基荧光素测定的Cl(-)/ HCO交换活性在功能性CFTR转染的细胞中增加了约两倍。这与表达功能性CFTR并在可渗透支持物上生长的细胞中顶端(36)Cl流入量增加有关。 Northern杂交表明在表达功能性CFTR的细胞中腺瘤(DRA)表达下调。在表达功能性CFTR的细胞中,假定的阴离子转运蛋白PAT1的表达也显着增加。通过Northern杂交在天然小鼠胰腺中高水平检测到DRA,并通过免疫组织化学研究将其定位于导管细胞的顶端结构域。总之,CFTR上调了培养的胰管细胞中的DRA和PAT1表达。我们建议CF患者的胰腺HCO分泌缺陷部分归因于DRA(可能还有PAT1)介导的根尖Cl(-)/ HCO交换活性的下调。

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