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DYRK1A-TGF-β signaling axis determines sensitivity to OXPHOS inhibition in hepatocellular carcinoma.

Ying Cao ,
Ruolan Qian ,
Ruilian Yao ,
Quan Zheng ,
Chen Yang ,
Xupeng Yang ,
Shuyi Ji ,
Linmen Zhang ,
Shujie Zhan ,
Yiping Wang ,
Tianshi Wang ,
Hui Wang ,
Chun-Ming Wong ,
Shengxian Yuan ,
Christopher Heeschen ,
Qiang Gao ,
René Bernards ,
Wenxin Qin ,
Cun Wang

Abstract

Intervening in mitochondrial oxidative phosphorylation (OXPHOS) has emerged as a potential therapeutic strategy for certain types of cancers. Employing kinome-based CRISPR screen, we find that knockout of dual-specificity tyrosine phosphorylation-regulated kinase 1A (DYRK1A) synergizes with OXPHOS inhibitor IACS-010759 in liver cancer cells. Targeting DYRK1A combined with OXPHOS inhibitors activates TGF-β signaling, which is crucial for OXPHOS-inhibition-triggered cell death. Mechanistically, upregulation of glutamine transporter solute carrier family 1 member 5 (SLC1A5) transcription compensates for the increased glutamine requirement upon OXPHOS inhibition. DYRK1A directly phosphorylates SMAD3 Thr132, thereby suppressing the negative impact of TGF-β signaling on transcription of SLC1A5, leading to intrinsic resistance of liver cancer cells to OXPHOS inhibition. Moreover, we demonstrate the therapeutic efficacy of IACS-010759 in combination with DYRK1A inhibition in multiple liver cancer models, including xenografts, patient-derived xenografts, and spontaneous tumor model. Our study elucidates how the DYRK1A-TGF-β signaling axis controls the response of tumor cells to OXPHOS inhibition and provides valuable insights into targeting OXPHOS for liver cancer therapy.

More about this publication

Developmental cell

Volume 60
Issue nr. 10
Pages 1483-1497.e7
Publication date 19-05-2025

Full text links

Publisher website (DOI) 10.1016/j.devcel.2024.12.035
Europe PubMed Central 39798576
Pubmed 39798576

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