Variable efficiency of nonsense-mediated mRNA decay across human tissues, tumors and individuals

Guillermo Palou-Márquez1, Fran Supek2,3,4

  • 1Institute for Research in Biomedicine (IRB Barcelona), The Barcelona Institute for Science and Technology (BIST), Barcelona, 08028, Spain.

Genome Biology
|September 30, 2025
PubMed
Abstract

Insights

Nonsense-mediated mRNA decay (NMD) efficiency varies across human tissues and individuals. Genetic alterations, both inherited and acquired, influence NMD activity, impacting cancer development and treatment outcomes.

Area of Science:

  • Genomics
  • Molecular Biology
  • Cancer Research

Background:

  • Nonsense-mediated mRNA decay (NMD) is a critical RNA surveillance pathway.
  • NMD degrades aberrant mRNAs with premature termination codons (PTCs).
  • Its role in gene regulation and variability across human tissues and individuals is less understood.

Purpose of the Study:

  • To quantify NMD efficiency in human tissues and individuals.
  • To assess variability in NMD efficiency across tissues, tumors, and individuals.
  • To identify genetic mechanisms underlying NMD variability.

Main Methods:

  • Analysis of exomes and transcriptomes from human tumors and healthy tissues.
  • Monitoring mRNA levels of endogenous NMD target transcripts.
  • Utilizing allele-specific expression of germline PTCs.

Main Results:

  • NMD efficiency differs significantly between human tissues, with nervous and reproductive systems showing lower activity.
  • Substantial inter-individual variability in NMD efficiency was observed.
  • Somatic copy number alterations (e.g., 1q gain affecting SMG5/SMG7) and germline variants (e.g., in KDM6B) were identified as key mechanisms influencing NMD efficiency.
  • Variable NMD efficiency impacts selection on somatic mutations and correlates with cancer patient survival and immunotherapy response.

Conclusions:

  • Human tissue and individual NMD efficiency exhibit significant variability.
  • Germline and somatic genetic alterations are major drivers of this NMD variability.
  • Understanding NMD variability is crucial for its role in cancer biology and therapeutic strategies.

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