Comprehensive characterization of somatic mutations associated with chimeric RNAs in human cancers

Yuting Wang1,2, Meng Shu1,2, Tianqiang Wang3

  • 1The Province and Ministry Co-sponsored Collaborative Innovation Center for Medical Epigenetics, Tianjin Key Laboratory of Inflammatory Biology, Tianjin Geriatrics Institute, Tianjin Medical University General Hospital, Department of Bioinformatics, School of Basic Medical Sciences, Tianjin Medical University, Tianjin, China.

PubMed

Insights

This study reveals somatic single nucleotide variants (SNVs) linked to chimeric RNAs in cancers. These variants, found near chimeric RNA junctions, impact tumor specificity and patient survival, offering new insights into cancer development.

Area of Science:

  • Oncology
  • Genomics
  • Molecular Biology

Background:

  • Chimeric RNAs play roles in human tumors, arising from DNA recombination or RNA splicing.
  • Dysregulated gene expression from somatic mutations and altered splicing contributes to tumor development.

Purpose of the Study:

  • Investigate the link between somatic single nucleotide variants (SNVs) and chimeric RNAs.
  • Understand the formation mechanisms of chimeric RNAs in tumorigenesis.

Main Methods:

  • Pan-cancer analysis of somatic SNVs affecting chimeric RNAs.
  • Identification and characterization of somatic SNVs on chimeric RNAs (chiR-SNVs).
  • Analysis of chiR-SNV location, tumor specificity, and impact on patient survival.

Main Results:

  • Identified approximately 2900 somatic SNVs affecting chimeric RNAs across various cancer types.
  • Observed tumor-specific patterns for these SNVs, with high-frequency variants impacting patient survival.
  • Found chiR-SNVs predominantly within 10 nucleotides of chimeric RNA junctions, especially those spanning different chromosomes.

Conclusions:

  • Somatic SNVs associated with chimeric RNAs (chiR-SNVs) are common in tumors and can influence patient outcomes.
  • chiR-SNVs may disrupt RNA splicing, potentially inducing chimeric RNA formation.
  • This research provides a new perspective on the molecular mechanisms underlying tumorigenesis and disease pathways.