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首页> 外文期刊>American Journal of Physiology >Clinical and molecular characterization of the R751L-CFTR mutation
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Clinical and molecular characterization of the R751L-CFTR mutation

机译:R751L-CFTR突变的临床和分子表征

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Cystic fibrosis (CF) arises from mutations in the CF transmembrane conductance regulator {CFTR) gene, resulting in progressive and life-limiting respiratory disease. R751L is a rare CFTR mutation that is poorly characterized. Our aims were to describe the clinical and molecular phenotypes associated with R751L. Relevant clinical data were collected from three heterozygote individuals harboring R751L (2 patients with G551D/R751L and 1 with F508del/R751L). Assessment of R751L-CFTR function was made in primary human bronchial epithelial cultures (HBEs) and Xenopus oocytes. Molecular properties of R751L-CFTR were investigated in the presence of known CFTR modulators. Although sweat chloride was elevated in all three patients, the clinical phenotype associated with R751L was mild. Chloride secretion in F508del/R751L HBEs was reduced compared with non-CF HBEs and associated with a reduction in sodium absorption by the epithelial sodium channel (ENaC). However, R751L-CFTR function in Xenopus oocytes, together with folding and cell surface transport of R751L-CFTR, was not different from wild-type CFTR. Overall, R751L-CFTR was associated with reduced sodium chloride absorption but had functional properties similar to wild-type CFTR. This is the first report of R751L-CFTR that combines clinical phenotype with characterization of functional and biological properties of the mutant channel. Our work will build upon existing knowledge of mutations within this region of CFTR and, importantly, inform approaches for clinical management. Elevated sweat chloride and reduced chloride secretion in HBEs may be due to alternative non-CFTR factors, which require further investigation.
机译:囊性纤维化(CF)是由CF跨膜电导调节器的突变引起的R751L是一种罕见的CFTR突变,其特征尚不明确。我们的目的是描述与R751L相关的临床和分子表型。相关临床数据来自三个携带R751L的杂合子个体(2名G551D/R751L患者和1名F508del/R751L患者).在原代人支气管上皮培养物(HBEs)和爪蟾卵母细胞中评估R751L-CFTR功能。在已知的CFTR调节剂存在下,研究了R751L-CFTR的分子特性。虽然这三名患者的汗液氯化物含量均升高,但与R751L相关的临床表型较轻。与非CF HBE相比,F508del/R751L HBE中的氯化物分泌减少,并与上皮钠通道(ENaC)对钠的吸收减少有关。然而,非洲爪蟾卵母细胞中R751L-CFTR的功能,以及R751L-CFTR的折叠和细胞表面转运,与野生型CFTR并无区别。总体而言,R751L-CFTR与氯化钠吸收降低有关,但其功能特性与野生型CFTR相似。这是R751L-CFTR的首次报道,它将临床表型与突变通道的功能和生物学特性结合起来。我们的工作将建立在CFTR这一区域内突变的现有知识基础上,重要的是,为临床管理方法提供信息。HBEs中汗液氯离子浓度升高和氯离子分泌减少可能是由于其他非CFTR因素所致,需要进一步研究。

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