Krauss R D, Bubien J K, Drumm M L, Zheng T, Peiper S C, Collins F S, Kirk K L, Frizzell R A, Rado T A
Gregory Fleming James Cystic Fibrosis Research Center, Department of Microbiology, University of Alabama, Birmingham 35294.
EMBO J. 1992 Mar;11(3):875-83. doi: 10.1002/j.1460-2075.1992.tb05125.x.
We complemented the Cl- conductance defect in cystic fibrosis lymphocytes by transfection with wild-type cDNA for the cystic fibrosis transmembrane conductance regulator (CFTR). Stable transfectants were selected and subjected to molecular and functional analyses. We detected expression of endogenous CFTR mRNA in several CF and non-CF lymphoid cell lines by PCR. Expression from cDNA in the transfectants was demonstrated by amplifying vector-specific sequences. Both fluorescence and patch-clamp assays showed that transfectants expressing wild-type CFTR acquired properties previously associated with Cl- conductance (GCl) regulation in non-CF lymphocytes: (i) GCl was elevated in the G1 phase of the cell cycle, (ii) cells fixed at G1 increase GCl in response to increased cellular cAMP or Ca2+, (iii) agonist-induced increases in GCl were lost as the cells progressed to the S phase of the cell cycle. The cell cycle and agonist dependent regulation of GCl was not observed in CF lymphocytes transfected with CFTR cDNA containing stop codons in all reading frames at exon 6. Our findings indicate that lymphocytes express functional CFTR since wild-type CFTR corrects the defects in Cl- conductance regulation found in CF lymphocytes. Evaluation of the mechanism of this novel, CFTR-mediated regulation of GCl during cell cycling should provide further insights into the function of CFTR.
我们通过用囊性纤维化跨膜传导调节因子(CFTR)的野生型cDNA转染来补充囊性纤维化淋巴细胞中的氯离子传导缺陷。选择稳定转染子并进行分子和功能分析。我们通过PCR在几种囊性纤维化和非囊性纤维化淋巴细胞系中检测到内源性CFTR mRNA的表达。通过扩增载体特异性序列证明了转染子中cDNA的表达。荧光和膜片钳分析均表明,表达野生型CFTR的转染子获得了先前与非囊性纤维化淋巴细胞中氯离子传导(GCl)调节相关的特性:(i)细胞周期G1期GCl升高;(ii)固定在G1期的细胞在细胞内cAMP或Ca2+增加时GCl增加;(iii)随着细胞进入细胞周期的S期,激动剂诱导的GCl增加消失。在第6外显子所有阅读框中含有终止密码子的CFTR cDNA转染的囊性纤维化淋巴细胞中未观察到GCl的细胞周期和激动剂依赖性调节。我们的研究结果表明淋巴细胞表达功能性CFTR,因为野生型CFTR纠正了囊性纤维化淋巴细胞中氯离子传导调节的缺陷。评估这种新型的、CFTR介导的细胞周期中GCl调节机制应能进一步深入了解CFTR的功能。