Loss of m6A unmasks a senescence-associated inflammatory program in human microglia

Insights

Reduced N6-methyladenosine (m6A) RNA modification drives microglial senescence and inflammation. This finding suggests m6A RNA regulation is crucial for maintaining brain health and preventing aging-related inflammatory conditions.

Area of Science:

  • Neuroscience
  • Immunology
  • Epigenetics

Background:

  • Chronic microglial inflammation and cellular senescence are key features of the aging brain.
  • The precise molecular mechanisms driving sustained microglial inflammatory states are not fully understood.
  • Previous studies linked RNA modification N6-methyladenosine (m6A) and METTL3 to senescence, but m6A-independent METTL3 functions complicated interpretation.

Purpose of the Study:

  • To determine if sustained reduction of m6A is sufficient to induce microglial senescence.
  • To investigate the molecular consequences of inhibiting METTL3's catalytic activity on microglial inflammatory states.

Main Methods:

  • Selective catalytic inhibition of METTL3 using STM2457 in human HMC3 microglia.
  • Assessment of senescence markers (e.g., β-galactosidase activity, morphology, proliferation, Lamin B1 loss).
  • Transcriptomic profiling to analyze gene expression changes, including NF-κB and interferon signatures, and RNA-related responses.

Main Results:

  • Catalytic inhibition of METTL3 successfully lowered global m6A levels and induced a senescence-like inflammatory state in microglia.
  • Observed senescence features included altered cell morphology, reduced proliferation, Lamin B1 loss, and nuclear remodeling.
  • Transcriptomic analysis revealed suppressed mitotic programs, a senescence-associated secretory phenotype (SASP)-like inflammatory output, and increased cytoplasmic double-stranded RNA, specifically linked to HERVK elements.

Conclusions:

  • Reduced m6A levels are sufficient to drive microglial senescence and inflammation.
  • m6A modification acts as a safeguard, preserving microglial homeostasis by limiting immunogenic RNA accumulation and senescence.
  • Decreased m6A-dependent RNA regulation may contribute to the chronic inflammatory remodeling observed in the aging brain.

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