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RNA N-Methyladenosine-Binding Protein YTHDFs Redundantly Attenuate Cancer Immunity by Downregulating IFN-γ Signaling in Gastric Cancer.

Advanced science (Weinheim, Baden-Wurttemberg, Germany) 2025 Vol.12(3) p. e2410806

Jang D, Hwa C, Kim S, Oh J, Shin S, Lee SJ, Kim J, Lee SE, Yang Y, Kim D, Lee S, Jung HR, Oh Y, Kim K, Lee HS, An JY, Cho SY

📝 환자 설명용 한 줄

Immunotherapy holds potential as a treatment for gastric cancer (GC), though immune checkpoint inhibitor (ICI) resistance remains an obstacle.

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BibTeX ↓ RIS ↓
APA Jang D, Hwa C, et al. (2025). RNA N-Methyladenosine-Binding Protein YTHDFs Redundantly Attenuate Cancer Immunity by Downregulating IFN-γ Signaling in Gastric Cancer.. Advanced science (Weinheim, Baden-Wurttemberg, Germany), 12(3), e2410806. https://doi.org/10.1002/advs.202410806
MLA Jang D, et al.. "RNA N-Methyladenosine-Binding Protein YTHDFs Redundantly Attenuate Cancer Immunity by Downregulating IFN-γ Signaling in Gastric Cancer.." Advanced science (Weinheim, Baden-Wurttemberg, Germany), vol. 12, no. 3, 2025, pp. e2410806.
PMID 39587835

Abstract

Immunotherapy holds potential as a treatment for gastric cancer (GC), though immune checkpoint inhibitor (ICI) resistance remains an obstacle. One resistance mechanism involves defects in interferon-γ (IFN-γ) signaling, in which IFN-γ is linked to improved responsiveness to ICIs. Herein, the roles of RNA N-methyladenosine (m6A) modifications in regulation of IFN-γ signaling and the responsiveness to ICIs are unveiled. The m6A-binding protein YTH N-methyladenosine RNA-binding protein F1 (YTHDF1) is overexpressed in GC tissues, correlating with the suppression of cancer immunity and poorer survival rates. YTHDF1 overexpression impaired the responsiveness to IFN-γ in GC cells, and knockdown studies indicated the redundant effects of YTHDF2 and YTHDF3 with YTHDF1 in IFN-γ responsiveness. RNA immunoprecipitation sequencing revealed YTHDFs directly target interferon regulatory factor 1 (IRF1) mRNA, a master regulator of IFN-γ signaling, leading to reduced RNA stability and consequent downregulation of IFN-γ signaling. Furthermore, in mouse syngeneic tumor models, Ythdf1 depletion in cancer cells resulted in reduced tumor growth and increased tumor-infiltrating lymphocytes, which are attributed to the augmentation of IFN-γ signaling. Collectively, these findings highlight how YTHDFs modulate cancer immunity by influencing IFN-γ signaling through IRF1 regulation, suggesting their viability as therapeutic targets in cancer immunotherapy.

MeSH Terms

Stomach Neoplasms; Interferon-gamma; Humans; Animals; Mice; RNA-Binding Proteins; Signal Transduction; Cell Line, Tumor; Adenosine; Down-Regulation; Interferon Regulatory Factor-1; RNA Splicing Factors; Gene Expression Regulation, Neoplastic; Female