YTHDF2 promotes ATP synthesis and immune evasion in B cell malignancies.

Chen, Zhenhua; Zeng, Chengwu; Yang, Lu; Che, Yuan; Chen, Meiling; Sau, Lillian; Wang, Bintao; Zhou, Keren et al. · Cell · 2025

basic_science · Level V

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Abstract

Long-term durable remission in patients with B cell malignancies following chimeric antigen receptor (CAR)-T cell immunotherapy remains unsatisfactory, often due to antigen escape. Malignant B cell transformation and oncogenic growth relies on efficient ATP synthesis, although the underlying mechanisms remain unclear. Here, we report that YTHDF2 facilitates energy supply and antigen escape in B cell malignancies, and its overexpression alone is sufficient to cause B cell transformation and tumorigenesis. Mechanistically, YTHDF2 functions as a dual reader where it stabilizes mRNAs as a 5-methylcytosine (m<sup>5</sup>C) reader via recruiting PABPC1, thereby enhancing their expression and ATP synthesis. Concomitantly, YTHDF2 also promotes immune evasion by destabilizing other mRNAs as an N<sup>6</sup>-methyladenosine (m<sup>6</sup>A) reader. Small-molecule-mediated targeting of YTHDF2 suppresses aggressive B cell malignancies and sensitizes them to CAR-T cell therapy.

Medical subject headings