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绵羊肺发育过程中CFTR表达的时间调控:对CF基因治疗的启示

Temporal regulation of CFTR expression during ovine lung development: implications for CF gene therapy.

作者信息

Broackes-Carter Fiona C, Mouchel Nathalie, Gill Deborah, Hyde Stephen, Bassett John, Harris Ann

机构信息

Paediatric Molecular Genetics, Institute of Molecular Medicine, Oxford University, John Radcliffe Hospital, Oxford OX3 9DS, UK.

出版信息

Hum Mol Genet. 2002 Jan 15;11(2):125-31. doi: 10.1093/hmg/11.2.125.

Abstract

The cystic fibrosis transmembrane conductance regulator (CFTR) protein is a small conductance chloride ion channel that may interact directly with other channels including the epithelial sodium channel (ENaC). CFTR is known to be more abundant in the airway epithelium during the second trimester of human development than after birth. This could be a consequence of the change in function of the respiratory epithelium from chloride secretion to sodium absorption near term. Alternatively it might reflect an additional role for CFTR in the developing airway epithelium. Though the lung epithelia of CF fetuses and infants rarely show gross histological abnormalities, there is often evidence of inflammation. Our aim was to establish whether CFTR expression levels correlated with specific developmental stages or differentiated functions in the ovine fetal lung. We evaluated CFTR expression using a quantitative assay of mRNA at 14 time points through gestation and showed highest levels at the start of the second trimester followed by a gradual decline through to term. In contrast, ENaC expression increased from the start of the third trimester. These results support a role for CFTR in differentiation of the respiratory epithelium and suggest that its expression levels are not merely reflecting major changes in the sodium/chloride bulk flow close to term. These observations may have significant implications for the likely success of CF gene therapy in the postnatal lung.

摘要

囊性纤维化跨膜传导调节因子(CFTR)蛋白是一种小电导氯离子通道,它可能与包括上皮钠通道(ENaC)在内的其他通道直接相互作用。已知在人类发育的妊娠中期,CFTR在气道上皮中的含量比出生后更高。这可能是由于临近足月时呼吸上皮功能从氯离子分泌转变为钠吸收的结果。或者,这可能反映了CFTR在发育中的气道上皮中的额外作用。尽管囊性纤维化胎儿和婴儿的肺上皮很少出现明显的组织学异常,但通常有炎症迹象。我们的目的是确定CFTR表达水平是否与绵羊胎儿肺的特定发育阶段或分化功能相关。我们通过对妊娠期间14个时间点的mRNA进行定量分析来评估CFTR表达,结果显示在妊娠中期开始时表达水平最高,随后逐渐下降直至足月。相比之下,ENaC表达从妊娠晚期开始增加。这些结果支持了CFTR在呼吸上皮分化中的作用,并表明其表达水平不仅仅反映了临近足月时钠/氯总流量的主要变化。这些观察结果可能对出生后肺部CF基因治疗的可能成功具有重要意义。

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