Ngo Hoang Hai, Yu Bo-Yeung, Lee Jeong-Eun, Kim Hyunwoo, Keum Young-Sam
College of Pharmacy and Integrated Research Institute for Drug Development, Dongguk University, Goyang, South Korea.
Free Radic Res. 2025 Jan;59(1):102-115. doi: 10.1080/10715762.2025.2451679. Epub 2025 Jan 15.
Cancer genome sequencing studies have identified somatic mutations in the KEAP1/NRF2 pathway. In an effort to identify novel NRF2 small molecule inhibitor(s), we have screened a natural compound library comprising 1330 chemicals in A549-ARE-GFP-luciferase cells and identified that narciclasine significantly inhibits NRF2-dependent luciferase activity. Narciclasine suppressed the expression of NRF2 and NRF2 target genes, caused significant oxidative stress, and sensitized cisplatin-mediated apoptosis in A549 cells. In addition, we have observed that WD Repeat Domain 43 (WDR43) serves as a direct target of narciclasine for the inhibition of NRF2 as narciclasine binds to recombinant WDR43 and silencing attenuated the inhibition of NRF2 by narciclasine in A549 cells. Finally, we observed that administration of narciclasine significantly decreased the growth of A549 xenografts. Together, our results demonstrate that the inhibition of NRF2 by narciclasine is mediated by WDR43 and future studies are necessary to elucidate the exact mechanism of how WDR43 mediates the inhibition of NRF2 by narciclasine.
癌症基因组测序研究已经在KEAP1/NRF2信号通路中鉴定出体细胞突变。为了鉴定新型NRF2小分子抑制剂,我们在A549-ARE-GFP-荧光素酶细胞中筛选了一个包含1330种化学物质的天然化合物库,并确定水仙环素能显著抑制NRF2依赖的荧光素酶活性。水仙环素抑制了NRF2及其靶基因的表达,引起显著的氧化应激,并使A549细胞对顺铂介导的凋亡敏感。此外,我们观察到WD重复结构域43(WDR43)作为水仙环素抑制NRF2的直接靶点,因为水仙环素与重组WDR43结合,并且在A549细胞中沉默WDR43减弱了水仙环素对NRF2的抑制作用。最后,我们观察到给予水仙环素显著降低了A549异种移植瘤的生长。总之,我们的结果表明水仙环素对NRF2的抑制作用是由WDR43介导的,未来有必要开展研究以阐明WDR43如何介导水仙环素对NRF2的抑制作用的确切机制。