Department of Biology, Stanford University, Stanford, CA 94305.
Department of Molecular and Cell Biology, University of California, Berkeley, CA 94720.
Mol Biol Cell. 2024 Feb 1;35(2):ar15. doi: 10.1091/mbc.E23-08-0336. Epub 2023 Nov 29.
Over 80% of people with cystic fibrosis (CF) carry the F508del mutation in the cystic fibrosis transmembrane conductance regulator (CFTR), a chloride ion channel at the apical plasma membrane (PM) of epithelial cells. F508del impairs CFTR folding causing it to be destroyed by endoplasmic reticulum associated degradation (ERAD). Small-molecule correctors, which act as pharmacological chaperones to divert CFTR-F508del from ERAD, are the primary strategy for treating CF, yet corrector development continues with only a rudimentary understanding of how ERAD targets CFTR-F508del. We conducted genome-wide CRISPR/Cas9 knockout screens to systematically identify the molecular machinery that underlies CFTR-F508del ERAD. Although the ER-resident ubiquitin ligase, RNF5 was the top E3 hit, knocking out only modestly reduced CFTR-F508del degradation. Sublibrary screens in an knockout background identified RNF185 as a redundant ligase and demonstrated that CFTR-F508del ERAD is robust. Gene-drug interaction experiments illustrated that correctors tezacaftor (VX-661) and elexacaftor (VX-445) stabilize sequential, RNF5-resistant folding states. We propose that binding of correctors to nascent CFTR-F508del alters its folding landscape by stabilizing folding states that are not substrates for RNF5-mediated ubiquitylation.
超过 80%的囊性纤维化 (CF) 患者携带囊性纤维化跨膜电导调节因子 (CFTR) 中的 F508del 突变,CFTR 是位于上皮细胞顶膜 (PM) 的氯离子通道。F508del 会损害 CFTR 的折叠,导致其被内质网相关降解 (ERAD) 破坏。小分子校正剂作为药理学伴侣,可以将 CFTR-F508del 从 ERAD 中转移出来,是治疗 CF 的主要策略,但在仅对 ERAD 靶向 CFTR-F508del 的机制有初步了解的情况下,校正剂的开发仍在继续。我们进行了全基因组 CRISPR/Cas9 敲除筛选,以系统地鉴定构成 CFTR-F508del ERAD 的分子机制。虽然内质网驻留泛素连接酶 RNF5 是顶级 E3 命中,但敲除仅适度降低 CFTR-F508del 的降解。在 敲除背景下的亚文库筛选鉴定了 RNF185 作为冗余连接酶,并证明 CFTR-F508del ERAD 是强大的。基因药物相互作用实验表明,校正剂 tezacaftor (VX-661) 和 elexacaftor (VX-445) 稳定了连续的、RNF5 抗性折叠状态。我们提出,校正剂与新生 CFTR-F508del 的结合通过稳定不是 RNF5 介导的泛素化底物的折叠状态来改变其折叠景观。