首页> 外文期刊>Journal of Molecular Biology >Regulatory insertion removal restores maturation, stability and function of DeltaF508 CFTR.
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Regulatory insertion removal restores maturation, stability and function of DeltaF508 CFTR.

机译:移除规则插入可恢复DeltaF508 CFTR的成熟度,稳定性和功能。

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摘要

The cystic fibrosis transmembrane conductance regulator (CFTR) epithelial anion channel is a large multidomain membrane protein that matures inefficiently during biosynthesis. Its assembly is further perturbed by the deletion of F508 from the first nucleotide-binding domain (NBD1) responsible for most cystic fibrosis. The mutant polypeptide is recognized by cellular quality control systems and is proteolyzed. CFTR NBD1 contains a 32-residue segment termed the regulatory insertion (RI) not present in other ATP-binding cassette transporters. We report here that RI deletion enabled F508 CFTR to mature and traffic to the cell surface where it mediated regulated anion efflux and exhibited robust single chloride channel activity. Long-term pulse-chase experiments showed that the mature DeltaRI/DeltaF508 had a T(1/2) of approximately 14 h in cells, similar to the wild type. RI deletion restored ATP occlusion by NBD1 of DeltaF508 CFTR and had a strong thermostabilizing influence on the channel with gating up to at least 40 degrees C. None of these effects of RI removal were achieved by deletion of only portions of RI. Discrete molecular dynamics simulations of NBD1 indicated that RI might indirectly influence the interaction of NBD1 with the rest of the protein by attenuating the coupling of the F508-containing loop with the F1-like ATP-binding core subdomain so that RI removal overcame the perturbations caused by F508 deletion. Restriction of RI to a particular conformational state may ameliorate the impact of the disease-causing mutation.
机译:囊性纤维化跨膜电导调节剂(CFTR)上皮阴离子通道是一种大型的多域膜蛋白,在生物合成过程中效率低下。它的组装进一步受到第一个核苷酸结合结构域(NBD1)中引起大多数囊性纤维化的F508缺失的干扰。突变多肽被细胞质量控制系统识别并被蛋白水解。 CFTR NBD1包含32个残基的片段,称为其他ATP结合盒转运蛋白中不存在的调控插入(RI)。我们在这里报告,RI删除使F508 CFTR能够成熟并运输到细胞表面,在其中它介导调节的阴离子流出并表现出强大的单个氯离子通道活性。长期脉冲追踪实验表明,成熟的DeltaRI / DeltaF508在细胞中的T(1/2)约为14 h,与野生型相似。 RI缺失可恢复DeltaF508 CFTR的NBD1的ATP闭塞,并且在高达40℃的门控条件下对通道具有很强的热稳定作用。仅删除一部分RI不会获得RI去除的这些效果。 NBD1的离散分子动力学模拟表明,RI可能通过减弱含F508的环与F1样ATP结合核心亚结构域的偶联而间接影响NBD1与其余蛋白质的相互作用,从而RI的去除克服了所引起的扰动通过F508删除。将RI限制为特定的构象状态可能会改善致病突变的影响。

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