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Adamantaniline Derivatives Target ATP5B to Inhibit Translation of Hypoxia Inducible Factor-1α.

Huiti Li | Yali Liu | Zian Xue | Li Zhang | Xiaoxue Ruan | Jintong Yang | Zhongjiao Fan | Hongfang Zhao | Yu Cao | Guoqiang Chen | Ying Xu | Lu Zhou
Advanced science (Weinheim, Baden-Wurttemberg, Germany) | 2023

Hypoxia inducible factor-1α (HIF-1α) plays a critical role in cellular adaptation to hypoxia and it is a potential therapeutic target for anti-cancer drugs. Applying high-throughput screening, here it is found that HI-101, a small molecule containing an adamantaniline moiety, effectively reduces HIF-1α protein expression. With the compound as a hit, a probe (HI-102) is developed for target identification by affinity-based protein profiling. The catalytic β subunit of mitochondrial FO F1 -ATP synthase, ATP5B, is identified as the binding protein of HI-derivatives. Mechanistically, HI-101 promotes the binding of HIF-1α mRNA to ATP5B, thus inhibiting HIF-1α translation and the following transcriptional activity. Further modifications of HI-101 lead to HI-104, a compound with good pharmacokinetic properties, exhibiting antitumor activity in MHCC97-L mice xenograft model, and HI-105, the most potent compound with an IC50 of 26 nm. The findings provide a new strategy for further developing HIF-1α inhibitors by translational inhibition through ATP5B.

Pubmed ID: 37401167

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Associated grants

  • Agency: National Natural Science Foundation of China,
    Id: 91853206
  • Agency: National Natural Science Foundation of China,
    Id: 22077019
  • Agency: National Natural Science Foundation of China,
    Id: 81972615
  • Agency: National Natural Science Foundation of China,
    Id: 81721004
  • Agency: Shanghai Municipal Committee of Science and Technology,
    Id: 21XD1420600
  • Agency: Shanghai Municipal Committee of Science and Technology,
    Id: 21TQ016
  • Agency: CAMS Innovation Fund for Medical Sciences,
    Id: 2019-I2M-5-051
  • Agency: National Key R&D Program of China,
    Id: 2020YFA0803403

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