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Bicarbonate conductance and pH regulatory capability of cystic fibrosis transmembrane conductance regulator.

机译:碳酸氢盐电导率和pH调节能力的囊性纤维化跨膜电导调节剂。

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摘要

The cystic fibrosis transmembrane conductance regulator (CFTR) is an epithelial Cl- channel regulated by protein kinase A. The most common mutation in cystic fibrosis (CF), deletion of Phe-508 (delta F508-CFTR), reduces Cl- secretion, but the fatal consequences of CF have been difficult to rationalize solely in terms of this defect. The aim of this study was to determine the role of CFTR in HCO3- transport across cell membranes. HCO3- permeability was assessed from measurements of intracellular pH [pHi; from spectrofluorimetry of the pH-sensitive dye 2',7'-bis(2-carboxyethyl)-5-(and -6)carboxyfluorescein] and of channel activity (patch clamp; cell attached and isolated, inside-out patches) on NIH 3T3 fibroblasts and C127 mammary epithelial cells transfected with wild-type CFTR (WT-CFTR) or delta F508-CFTR, and also on mock-transfected cells. When WT-CFTR-transfected cells were acidified (pulsed with NH4Cl) and incubated in Na(+)-free (N-methyl-D-glucamine substitution) solutions (to block Na(+)-dependent pHi regulatory mechanisms), pHi remained acidic (pH approximately 6.5) until the cells were treated with 20 microM forskolin (increases cellular [cAMP]); pHi then increased toward (but not completely to) control level (pHi 7.2) at a rate of 0.055 pH unit/min. Forskolin had no effect on rate of pHi recovery in delta F508 and mock-transfected cells. This Na(+)-independent, forskolin-dependent pHi recovery was not observed in HCO3-/CO2-free medium. Forskolin-treated WT-CFTR-transfected (but not delta F508-CFTR or mock-transfected) cells in Cl(-)-containing, HCO3(-)-free solutions showed Cl- channels with a linear I/V relationship and a conductance of 10.4 +/- 0.5 pS in symmetrical 150 mM Cl-. When channels were incubated with different [Cl-] and [HCO3-] on the inside and outside, the Cl-/HCO3- permeability ratio (determined from reversal potentials of I/V curves) was 3.8 +/- 1.0 (mean +/- SEM; n = 9); the ratio of conductances was 3.9 +/- 0.5 (at 150 mM Cl- and 127 mM HCO3-. We conclude that in acidified cells the WT-CFTR functions as a base loader by allowing a cAMP-dependent influx of HCO3- through channels that conduct HCO3- about one-quarter as efficiently as it conducts Cl-. Under physiological conditions, the electrochemical gradients for both Cl- and HCO3- are directed outward, so CFTR likely contributes to the epithelial secretion of both ions. HCO3- secretion may be important for controlling pH of the luminal, but probably not the cytoplasmic, fluid in CFTR-containing epithelia. In CF, a decreased secretion of HCO3- may lead to decreased pH of the luminal fluid.
机译:囊性纤维化跨膜电导调节剂(CFTR)是由蛋白激酶A调节的上皮Cl-通道。囊性纤维化(CF)中最常见的突变是Phe-508的缺失(δF508-CFTR),可降低Cl-分泌,但仅就此缺陷而言,CF的致命后果很难被合理化。这项研究的目的是确定CFTR在HCO3-跨细胞膜转运中的作用。 HCO3渗透性通过细胞内pH值[pHi;从pH敏感染料2',7'-双(2-羧乙基)-5-(和-6)羧基荧光素的荧光光谱分析和NIH上的通道活性(膜片钳;细胞附着和分离的,由内而外的膜片)野生型CFTR(WT-CFTR)或F508-CFTRδ转染的3T3成纤维细胞和C127乳腺上皮细胞,以及模拟转染的细胞。当将WT-CFTR转染的细胞酸化(用NH4Cl脉冲)并在无Na(+)(N-甲基-D-葡糖胺替代)溶液中孵育(以阻断依赖Na(+)的pHi调节机制)时,pHi仍然存在酸性(pH约6.5)直至细胞用20 microM毛喉素处理(增加细胞[cAMP]);然后,pHi以0.055 pH单位/分钟的速率向(但不完全)达到对照水平(pHi 7.2)。佛司可林对ΔF508和模拟转染细胞中pHi的回收率没有影响。在不含HCO3- / CO2的培养基中未观察到这种Na(+)依赖性,福司可林依赖性的pHi恢复。含Cl(-),不含HCO3(-)的溶液中经Forskolin处理的WT-CFTR转染的细胞(但不是δF508-CFTR或模拟转染的细胞)显示具有线性I / V关系和电导的Cl-通道在对称的150 mM Cl-中为10.4 +/- 0.5 pS。当通道在内部和外部分别用不同的[Cl-]和[HCO3-]孵育时,Cl- / HCO3-的渗透率比(由I / V曲线的反向电位确定)为3.8 +/- 1.0(平均值+ / -SEM; n = 9);电导比为3.9 +/- 0.5(在150 mM Cl-和127 mM HCO3-时。我们得出结论,在酸化的细胞中,WT-CFTR通过允许cAMP依赖性的HCO3-流入通道,​​从而充当了基本装载剂。 HCO3-的传导效率约为Cl-的四分之一,在生理条件下,Cl-和HCO3-的电化学梯度都朝外,因此CFTR可能有助于两种离子的上皮分泌。在控制含CFTR的上皮细胞的pH值方面很重要,但对于控制细胞液的pH值很重要;在CF中,HCO 3分泌减少可能导致管腔液的pH值降低。

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