首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Revertant mutants G550E and 4RK rescue cystic fibrosis mutants in the first nucleotide-binding domain of CFTR by different mechanisms
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Revertant mutants G550E and 4RK rescue cystic fibrosis mutants in the first nucleotide-binding domain of CFTR by different mechanisms

机译:回复突变体G550E和4RK通过不同机制拯救CFTR第一核苷酸结合域中的囊性纤维化突变体

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摘要

The revertant mutations G550E and 4RK [the simultaneous mutation of four arginine-framed tripeptides (AFTs): R29K, R516K, R555K, and R766K] rescue the cell surface expression and function of F508del-cystic fibrosis (CF) transmembrane conductance regulator (-CFTR), the most common CF mutation. Here, we investigate their mechanism of action by using biochemical and functional assays to examine their effects on F508del and three CF mutations (R560T, A561E, and V562I) located within a conserved region of the first nucleotide-binding domain (NBD1) of CFTR. Like F508del, R560T and A561E disrupt CFTR trafficking. G550E rescued the trafficking defect of A561E but not that of R560T. Of note, the processing and function of V562I were equivalent to that of wild-type (wt)-CFTR, suggesting that V562I is not a disease-causing mutation. Biochemical studies revealed that 4RK generates higher steady-state levels of mature CFTR (band C) for wt- and V562I-CFTR than does G550E. Moreover, functional studies showed that the revertants rescue the gating defect of F508del-CFTR with different efficacies. 4RK modestly increased F508del-CFTR activity by prolonging channel openings, whereas G550E restored F508del-CFTR activity to wt levels by altering the duration of channel openings and closings. Thus, our data suggest that the revertants G550E and 4RK might rescue F508del-CFTR by distinct mechanisms. G550E likely alters the conformation of NBD1, whereas 4RK allows F508del-CFTR to escape endoplasmic reticulum retention/retrieval mediated by AFTs. We propose that AFTs might constitute a checkpoint for endoplasmic reticulum quality control.
机译:回复突变G550E和4RK [四个精氨酸框架三肽(AFT):R29K,R516K,R555K和R766K的同时突变]可以挽救F508del-囊性纤维化(CF)跨膜电导调节器(-CFTR)的细胞表面表达和功能。 ),最常见的CF突变。在这里,我们通过使用生化和功能分析来研究它们对F508del和位于CFTR第一核苷酸结合域(NBD1)保守区域内的三个CF突变(R560T,A561E和V562I)的作用,从而研究它们的作用机理。像F508del一样,R560T和A561E破坏了CFTR的交易。 G550E挽救了A561E的贩运缺陷,但没有解决R560T的贩运缺陷。值得注意的是,V562I的加工和功能与野生型(wt)-CFTR相同,这表明V562I并非致病突变。生化研究表明,与G550E相比,wt-和V562I-CFTR的4RK生成的成熟CFTR(C带)的稳态水平更高。此外,功能研究表明,还原剂以不同的效率挽救了F508del-CFTR的门控缺陷。 4RK通过延长通道打开时间适度增加了F508del-CFTR的活性,而G550E通过更改通道打开和关闭的持续时间将F508del-CFTR的活性恢复到wt水平。因此,我们的数据表明,回复基因G550E和4RK可能通过不同的机制拯救F508del-CFTR。 G550E可能会改变NBD1的构象,而4RK允许F508del-CFTR逃脱AFT介导的内质网保留/回收。我们建议AFTs可能构成内质网质量控制的检查点。

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