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Updated: Jan 19, 2026
The Upf Proteins and Nonsense-mediated mRNA Decay
N6-Methyladenosine Modulates Nonsense-Mediated mRNA Decay in Human Glioblastoma
Fuxi Li1,2, Yang Yi3, Yanyan Miao4
1RNA Biomedical Institute, Sun Yat-sen Memorial Hospital, Sun Yat-sen University, Guangzhou, China.
Abstract:
The N6-methyladenosine (m6A) modification influences various mRNA metabolic events and tumorigenesis, however, its functions in nonsense-mediated mRNA decay (NMD) and whether NMD detects induced carcinogenesis pathways remain undefined. Here, we showed that the m6A methyltransferase METTL3 sustained its oncogenic role by modulating NMD of splicing factors and alternative splicing isoform switches in glioblastoma (GBM). Methylated RNA immunoprecipitation-seq (MeRIP-seq) analyses showed that m6A modification peaks were enriched at metabolic pathway-related transcripts in glioma stem cells (GSC) compared with neural progenitor cells. In addition, the clinical aggressiveness of malignant gliomas was associated with elevated expression of METTL3. Furthermore, silencing METTL3 or overexpressing dominant-negative mutant METTL3 suppressed the growth and self-renewal of GSCs. Integrated transcriptome and MeRIP-seq analyses revealed that downregulating the expression of METTL3 decreased m6A modification levels of serine- and arginine-rich splicing factors (SRSF), which led to YTHDC1-dependent NMD of SRSF transcripts and decreased SRSF protein expression. Reduced expression of SRSFs led to larger changes in alternative splicing isoform switches. Importantly, the phenotypes mediated by METTL3 deficiency could be rescued by downregulating BCL-X or NCOR2 isoforms. Overall, these results establish a novel function of m6A in modulating NMD and uncover the mechanism by which METTL3 promotes GBM tumor growth and progression. SIGNIFICANCE: These findings establish the oncogenic role of m6A writer METTL3 in glioblastoma stem cells.
Insights
The N6-methyladenosine (m6A) modification, regulated by METTL3, promotes glioblastoma growth by controlling nonsense-mediated mRNA decay (NMD) of splicing factors. This study reveals a new m6A-NMD pathway critical for glioblastoma stem cell progression.
Area of Science:
- Epigenetics
- Molecular Biology
- Cancer Research
Background:
- N6-methyladenosine (m6A) modifications impact mRNA metabolism and tumorigenesis.
- The role of m6A in nonsense-mediated mRNA decay (NMD) and glioblastoma (GBM) carcinogenesis is not fully understood.
Purpose of the Study:
- To investigate the function of m6A methyltransferase METTL3 in glioblastoma stem cells (GSCs).
- To elucidate the mechanism by which METTL3 influences NMD and alternative splicing in GBM.
Main Methods:
- Methylated RNA immunoprecipitation followed by sequencing (MeRIP-seq) to identify m6A-modified transcripts.
- Transcriptome analysis to assess gene expression and alternative splicing.
- Manipulation of METTL3 expression and its impact on GSC growth and self-renewal.
Main Results:
- METTL3 expression is elevated in aggressive gliomas and promotes GSC growth and self-renewal.
- METTL3 downregulates m6A modification of serine- and arginine-rich splicing factors (SRSFs).
- This leads to YTHDC1-dependent NMD of SRSF transcripts, altered alternative splicing, and GBM progression.
Conclusions:
- METTL3 sustains its oncogenic role in GBM by modulating NMD of splicing factors and alternative splicing.
- This study establishes a novel function of m6A in regulating NMD and uncovers a METTL3-driven pathway promoting GBM tumor growth.
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