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February 5, 2026The EMBO Journal0 citationsOpen Access

RBM15B recognizes H3K79me2 to guide selective m6A-modification of mRNA and enhance oncoprotein translation in MLL-r leukemia

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TCTian-Qi ChenYSYu-Meng SunSZShun-Xin Zhu

Key Points

  • To investigate how RBM15B interacts with H3K79me2 for m6A modification in leukemia.
  • Identified the role of RBM15B in m6A modification of mRNAs.
  • Studied the interaction between H3K79me2 and RBM15B.
  • Assessed the impact of m6A modification on oncogenic transcript translation.
  • Examined effects on leukemic stem cell self-renewal and leukemia maintenance.
  • RBM15B enhances m6A modification mainly in 5'UTRs and start codons.
  • The H47 residue in RBM15B is crucial for recognizing H3K79me2.
  • Selective m6A modification improves translation efficiency of oncogenic transcripts.
  • Blockade of the H3K79me2-RBM15B-m6A axis reduces leukemia cell survival and promotes differentiation.

Abstract

Abstract The distribution of N 6 -methyladenosine (m 6 A) controls its substrate RNA fate, playing key roles in various biological processes. However, the mechanism underlying site-selective m 6 A deposition of RNAs, especially in the start codon regions, and the role in epigenetic information transduction connecting tumorigenesis remain largely unknown. Here, we identified RBM15B mainly modulates m 6 A modifications in the 5′untranslated regions (UTRs) and around the start codons of mRNAs transcribed. This process is guided by H3K79me2 histone methylation, a critical epigenetic modification in mixed lineage leukemia. We show that the H47 of RBM15B is a key residue for the recognition of H3K79me2. The selective m 6 A modification orchestrated by the H3K79me2–RBM15B axis enhances translation efficiency of oncogenic transcripts, and promotes self-renewal of leukemic stem cells and leukemia maintenance. We further demonstrate that blockade of the H3K79me2-RBM15B-m 6 A axis inhibits the survival of leukemia cells and promotes cell differentiation, and impairs hematological malignancies. This study uncovers a novel selective m 6 A deposition mechanism mediated by H3K79me2 and RBM15B, highlighting promising therapeutic targets for hematological malignancies.

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Cite This Study

Chen et al. (2026) studied this question.

synapsesocial.com/papers/698434ebf1d9ada3c1fb3a4ahttps://doi.org/10.1038/s44318-026-00707-1
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