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June 1, 2026Frontiers in Immunology1 citationsOpen Access

HNRNPA2B1 as an emerging coordinator of RNA fate in cancer: m6A reading, RNA export, translation reprogramming, and immune–metabolic adaptation

WBWentao BoBZBiao ZhaoYWYali Wang

Key Points

  • This review aims to explore the role of HNRNPA2B1 in reprogramming RNA fate in cancer and its implications for therapy.
  • Synthesis of recent studies on HNRNPA2B1's role in RNA processes such as m6A regulation, RNA export, and translation control.
  • Assessment of HNRNPA2B1's associations with immune and metabolic phenotypes and response to therapies.
  • Review of experimental systems and tumor types related to HNRNPA2B1's functions.
  • HNRNPA2B1 mediates m6A-dependent stabilization of oncogenic RNAs.
  • Associations of HNRNPA2B1 with varied tumor responses to chemotherapy, radiotherapy, and other therapies were noted.
  • Evidence suggests HNRNPA2B1's involvement in RNA communication and immune evasion in a context-dependent manner.

Abstract

Cancer progression and treatment failure are increasingly recognized as consequences of tumor plasticity rather than static genetic alterations. A key component of this plasticity is the ability of cancer cells to reprogram RNA fate, thereby reshaping gene expression outputs in response to microenvironmental stress, immune surveillance, infection, and therapeutic pressure. Among RNA-binding proteins involved in post-transcriptional regulation, heterogeneous nuclear ribonucleoprotein A2/B1 (HNRNPA2B1) has been increasingly implicated in several cancer-associated RNA regulatory processes that extend beyond its initial characterization as an N6-methyladenosine (m6A) reader. In this review, we synthesize recent studies showing that HNRNPA2B1 participates in multiple aspects of RNA regulation, including m6A-dependent stabilization of oncogenic lncRNAs and mRNAs, ISGylation-associated selective nuclear export of m6A-tagged transcripts, cytoplasmic translation control, and extracellular vesicle–mediated RNA communication. We further discuss studies associating HNRNPA2B1 with immune–metabolic phenotypes and therapy response, including tumor acidosis, ferroptosis-related pathways, immune evasion, and altered sensitivity to chemotherapy, radiotherapy, endocrine therapy, and targeted treatments. Importantly, these mechanisms have largely been described in distinct tumor types, experimental systems, and biological contexts, and therefore should not yet be interpreted as a single universally established regulatory cascade. Instead, we organize current evidence within a context-aware framework in which HNRNPA2B1 is discussed as a possible regulator of selected RNA fate modules rather than as an established pan-cancer RNA fate hub. By distinguishing experimentally supported mechanisms from hypothesis-generating interpretations, this review provides a balanced assessment of the current evidence, limitations, and therapeutic implications of HNRNPA2B1-related RNA regulation in cancer.

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Cite This Study

Bo et al. (2026) studied this question.

synapsesocial.com/papers/6a1d20bc02fbce9130637008https://doi.org/10.3389/fimmu.2026.1805984
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Development of a prognostic model based on m6A reader HNRNPA2B1 upregulation and immune infiltration in multiple malignant tumors2025 · 1 citations
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  5. 5Small molecule inhibitors of hnRNPA2B1-RNA interactions reveal a predictable sorting of RNA subsets into extracellular vesicles2024 · 1 citations