Trezise A E, Buchwald M
Department of Genetics, Hospital for Sick Children, Toronto, Ontario, Canada.
Nature. 1991 Oct 3;353(6343):434-7. doi: 10.1038/353434a0.
Cystic fibrosis (CF) is caused by mutations in the gene encoding the cystic fibrosis transmembrane conductance regulator (CFTR). The principal manifestations of CF include increased concentration of Cl- in exocrine gland secretions, pancreatic insufficiency, chronic lung disease, intestinal blockage and malabsorption of fat, and male and female infertility. Insight into the function of CFTR can be gained by correlating its cell-specific expression with the physiology of those cells and with CF pathology. Determination of CFTR messenger RNA in rat tissues by in situ hybridization shows that it is specifically expressed in the ductal cells of the pancreas and the salivary glands. In the intestine, decreasing gradients of expression of the CFTR gene are observed on both the crypt-villus and the proximal-distal axes. This expression is consistent with CFTR being responsible for bidirectional Cl- transport, secretion in the intestinal crypts and reabsorption in the silivary gland ducts, and suggests that in these tissues CFTR functions as a regulated Cl- channel. In the lung, a broad band of hybridization includes the mucosa and submucosa of the bronchi and bronchioles. In the testis, CFTR expression is regulated during the cycle of the seminiferous epithelium. Postmeiotic expression is maximal in the round spermatids of stages VII and VIII, suggesting that CFTR plays a critical role in spermatogenesis and that deficiency of this function contributes to CF male infertility.
囊性纤维化(CF)由编码囊性纤维化跨膜传导调节因子(CFTR)的基因突变引起。CF的主要表现包括外分泌腺分泌物中氯离子浓度升高、胰腺功能不全、慢性肺部疾病、肠道梗阻以及脂肪吸收不良,还有男性和女性不育。通过将CFTR的细胞特异性表达与这些细胞的生理学以及CF病理学相关联,可以深入了解CFTR的功能。用原位杂交法测定大鼠组织中的CFTR信使核糖核酸显示,它在胰腺和唾液腺的导管细胞中特异性表达。在肠道中,在隐窝 - 绒毛轴和近端 - 远端轴上均观察到CFTR基因表达的递减梯度。这种表达与CFTR负责双向氯离子转运、肠道隐窝中的分泌以及唾液腺导管中的重吸收一致,表明在这些组织中CFTR作为一种受调控的氯离子通道发挥作用。在肺部,一条较宽的杂交带包括支气管和细支气管的黏膜和黏膜下层。在睾丸中,CFTR的表达在生精上皮周期中受到调控。减数分裂后,VII和VIII期的圆形精子细胞中表达最高,这表明CFTR在精子发生中起关键作用,并且该功能的缺陷导致CF男性不育。