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非洲爪蟾卵母细胞中I148T-CFTR与上皮钠通道的异常调节相互作用。

Abnormal regulatory interactions of I148T-CFTR and the epithelial Na+ channel in Xenopus oocytes.

作者信息

Suaud Laurence, Yan Wusheng, Rubenstein Ronald C

机构信息

Division of Pulmonary Medicine, Children's Hospital of Philadelphia, 34th St. and Civic Center Blvd., Philadelphia, PA 19104, USA.

出版信息

Am J Physiol Cell Physiol. 2007 Jan;292(1):C603-11. doi: 10.1152/ajpcell.00088.2006. Epub 2006 Jul 5.

Abstract

The mechanisms underlying regulatory interactions of the cystic fibrosis transmembrane conductance regulator (CFTR) and the epithelial Na(+) channel (ENaC) in Xenopus oocytes are controversial. CFTR's first nucleotide binding domain (NBD-1) may be important in these interactions, because mutations within NBD-1 impair these functional interactions. We hypothesized that an abnormal CFTR containing a non-NBD-1 mutation and able to transport chloride would retain regulatory interactions with murine ENaC (mENaC). We tested this hypothesis for I148T-CFTR, where the mutation is located in CFTR's first intracellular loop. I148T-CFTR has been associated with a severe CF phenotype, perhaps because of defects in its regulation of bicarbonate transport, but it transports chloride similarly to wild-type CFTR in model systems (Choi JY, Muallem D, Kiselyov K, Lee MG, Thomas PJ, Muallem S. Nature 410: 94-97, 2001). cRNAs encoding alphabetagamma-mENaC and I148T-CFTR were injected separately or together into Xenopus oocytes. mENaC and CFTR functional expression were assessed by two-electrode voltage clamp. mENaC whole oocyte expression was determined by immunoblotting, and surface expression was quantitated by surface biotinylation. Injection of I148T-CFTR cRNA alone yielded high levels of CFTR functional expression. In coinjected oocytes, mENaC functional and surface expression was not altered by activation of I148T-CFTR with forskolin/ IBMX. Furthermore, the CFTR potentiator genistein both enhanced functional expression of I148T-CFTR and restored regulation of mENaC surface expression by activated I148T-CFTR. These data suggest that the ability to transport chloride is not a critical determinant of regulation of mENaC by activated CFTR in Xenopus oocytes and provide further evidence that I148T-CFTR is dysfunctional despite maintaining the ability to transport chloride.

摘要

非洲爪蟾卵母细胞中囊性纤维化跨膜传导调节因子(CFTR)与上皮性钠离子通道(ENaC)之间调节相互作用的潜在机制存在争议。CFTR的第一个核苷酸结合结构域(NBD-1)在这些相互作用中可能很重要,因为NBD-1内的突变会损害这些功能相互作用。我们推测,含有非NBD-1突变且能够转运氯离子的异常CFTR将保留与小鼠ENaC(mENaC)的调节相互作用。我们针对I148T-CFTR验证了这一假设,该突变位于CFTR的第一个细胞内环中。I148T-CFTR与严重的囊性纤维化表型相关,这可能是由于其对碳酸氢盐转运的调节缺陷所致,但在模型系统中,它转运氯离子的方式与野生型CFTR相似(Choi JY、Muallem D、Kiselyov K、Lee MG、Thomas PJ、Muallem S.《自然》410:94 - 97,2001)。将编码αβγ-mENaC和I148T-CFTR的cRNA分别或一起注射到非洲爪蟾卵母细胞中。通过双电极电压钳评估mENaC和CFTR的功能表达。通过免疫印迹法测定mENaC在整个卵母细胞中的表达,并通过表面生物素化对表面表达进行定量。单独注射I148T-CFTR cRNA可产生高水平的CFTR功能表达。在共注射的卵母细胞中用福斯可林/异丁基甲基黄嘌呤激活I148T-CFTR不会改变mENaC的功能和表面表达。此外,CFTR增强剂染料木黄酮既能增强I148T-CFTR的功能表达,又能恢复激活的I148T-CFTR对mENaC表面表达的调节。这些数据表明,在非洲爪蟾卵母细胞中,转运氯离子的能力不是激活的CFTR对mENaC进行调节的关键决定因素,并进一步证明I148T-CFTR尽管保持了转运氯离子的能力,但功能仍然失调。

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