Systematic characterization of somatic mutation-mediated microRNA regulatory network perturbations
Hua, X.; Li, Y.; Guo, L.; Xu, M.; Qi, D.; Huang, J. H.; Bhat, A.; Zhou, Y.; Wu, E.; Yi, S. S.
Show abstract
Somatic mutations are a major source of cancer development. Many driver mutations have been identified in protein coding regions. However, the function of mutations located in microRNAs (miRNAs) and their target binding sites along the human genome remains largely unknown. Here, we built comprehensive cancer-specific miRNA regulatory networks across 30 cancer types to systematically analyze the effect of mutations on miRNA related pathways. 3,518,261 mutations from 9,819 samples were mapped to miRNA-gene interactions (mGI), and mutations in miRNAs versus in their target genes show a mutually exclusive pattern in almost all cancer types. Using a linear regression method, we further identified 89 driver mutations in 14 cancer types that can significantly perturb miRNA regulatory networks. We find that driver mutations play their roles by altering RNA binding energy and the expression of target genes. Finally, we demonstrate that mutated driver gene targets are significantly down-regulated in cancer and function as tumor suppressors during cancer progression, suggesting potential miRNA candidates with significant clinical implications. We provide this data resource (CanVar-mGI) through a user-friendly, open-access web portal. Together, our results will facilitate novel non-coding biomarker identification and therapeutic drug design.
Matching journals
The top 8 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- CancerMIRNome: an interactive analysis and visualization database for miRNome profiles of human cancer 96%
- Whole-miRNome sequencing (WMS) - a panel for targeted sequencing of all human miRNA genes 96%
- EuRBPDB: a comprehensive resource for annotation, functional and oncological investigation of eukaryotic RNA binding proteins (RBPs) 95%
Similar papers in this journal
- The repertoire of copy number alteration signatures in human cancer 94%
- Joint reconstruction of cis-regulatory interaction networks across multiple tissues using single-cell chromatin accessibility data 94%
- CoRegNet: Unraveling Gene Co-regulation Networks from Public RNA-Seq Repositories Using a Beta-Binomial Statistical Model 94%
Similar papers in this journal
- Systematic analysis of aberrances of ferroptosis reveals its potential functional roles in cancer 94%
- Comparative analysis of clonal evolution among patients with right-sided colon cancer, left-sided colon cancer and rectal cancer 94%
- IReNA: integrated regulatory network analysis of single-cell transcriptomes 94%
Similar papers in this journal
- Inferring latent temporal progression and regulatory networks from cross-sectional transcriptomic data of cancer samples 94%
- Prioritizing and characterizing functionally relevant genes across human tissues 94%
- Network models of protein phosphorylation, acetylation, and ubiquitination connect metabolic and cell signaling pathways in lung cancer 93%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.