Teem J L, Carson M R, Welsh M J
University of Iowa College of Medicine, Department of Internal Medicine, Iowa City 52242, USA.
Recept Channels. 1996;4(1):63-72.
The most common cystic fibrosis mutation deletes phenylalanine 508 in CFTR (CFTR-F508). This mutation causes the loss of CFTR Cl- channel activity by disrupting biosynthetic processing so that mutant protein does not reach the plasma membrane. It also decreases the rate at which mutant channels open. To identify second-site mutations that could reverse the effects of delta F508, we used a chimeric yeast STE6/CFTR system bearing the delta F508 mutation. This chimera manifests defective mating. After mutagenesis of the first nucleotide-binding domain, we found that mutation R555K partially restored mating. However, it also increased mating in the chimera lacking the delta F508 mutation. When we introduced the R555K mutation into human CFTR-delta F508, we found that the loss of apical Cl- current caused by delta F508 was partially restored, predominantly due to a partial correction of the delta F508 processing defect. Analysis of single CFTR Cl- channels showed that the R555K mutation did not correct the prolonged closed time associated with delta F508, rather it increased activity of both wild-type and delta F508 channels by prolonging the duration of bursts of activity. These data suggest that the region around residue R555 in the first nucleotide-binding domain is important both in determining the ability of the delta F508 protein to be properly processed and in determining channel function.
最常见的囊性纤维化突变是在囊性纤维化跨膜传导调节因子(CFTR)中缺失苯丙氨酸508(CFTR-F508)。这种突变通过破坏生物合成过程导致CFTR氯离子通道活性丧失,使得突变蛋白无法到达质膜。它还降低了突变通道开放的速率。为了鉴定能够逆转ΔF508效应的第二位点突变,我们使用了携带ΔF508突变的嵌合酵母STE6/CFTR系统。这种嵌合体表现出有缺陷的交配。在对第一个核苷酸结合结构域进行诱变后,我们发现R555K突变部分恢复了交配能力。然而,它也增加了缺乏ΔF508突变的嵌合体的交配能力。当我们将R555K突变引入人CFTR-ΔF508时,我们发现由ΔF508引起的顶端氯离子电流的丧失得到了部分恢复,这主要是由于ΔF508加工缺陷得到了部分纠正。对单个CFTR氯离子通道的分析表明,R555K突变并没有纠正与ΔF508相关的延长的关闭时间,相反,它通过延长活动爆发的持续时间增加了野生型和ΔF508通道的活性。这些数据表明,第一个核苷酸结合结构域中R555残基周围的区域在决定ΔF508蛋白被正确加工的能力以及决定通道功能方面都很重要。