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Frontiers in research on cystic fibrosis: Understanding its molecular and chemical basis and relationship to the pathogenesis of the disease

机译:囊性纤维化研究的前沿领域:了解其分子和化学基础及其与疾病发病机理的关系

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摘要

In recent years a new family of transport proteins called ABC transporters has emerged. One member of this novel family, called CFTR (cystic fibrosis transmembrane conductance regulator), has received special attention because of its association with the disease cystic fibrosis (CF). This is an inherited disorder affecting about 1 in 2000 Caucasians by impairing epithelial ion transport, particularly that of chloride. Death may occur in severe cases because of chronic lung infections, especially by Pseudomonas aeruginosa, which cause a slow decline in pulmonary function. The prospects of ameliorating the symptoms of CF and even curing the disease were greatly heightened in 1989 following the cloning of the CFTR gene and the discovery that the mutation (Delta F508), which causes mast cases of CF, is localized within a putative ATP binding/ATP hydrolysis domain. The purpose of this introductory review in this minireview series is to summarize what we and others have learned during the past eight years about the structure and function of the first nucleotide binding domain (NBF1 or NBD1) of the CFTR protein and the effect thereon of disease-causing mutations. The relationship of these new findings to the pathogenesis of CF is also discussed.
机译:近年来,出现了一个称为ABC转运蛋白的转运蛋白新家族。这个新颖家族的一个成员,称为CFTR(囊性纤维化跨膜电导调节剂),由于与疾病性囊性纤维化(CF)有关而受到了特别的关注。这是一种遗传性疾病,通过损害上皮离子运输,特别是氯离子运输,影响了2000年左右的白种人。在严重的情况下,由于慢性肺部感染,尤其是铜绿假单胞菌,会导致肺功能缓慢下降,可能导致死亡。 1989年,随着CFTR基因的克隆以及发现导致CF肥大病例的突变(Delta F508)定位于假定的ATP结合中,极大改善了CF症状甚至治愈疾病的前景。 / ATP水解域。本小型综述系列的本介绍性综述的目的在于总结我们和其他人在过去八年中了解到的有关CFTR蛋白的第一个核苷酸结合域(NBF1或NBD1)的结构和功能以及对疾病的影响-引起突变。还讨论了这些新发现与CF发病机制的关系。

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