An integrated analysis of microRNAs regulating DNA damage response in triple-negative breast cancer

Breast Cancer. 2023 Sep;30(5):832-844. doi: 10.1007/s12282-023-01477-y. Epub 2023 Jun 21.

Abstract

Background: Triple-negative breast cancer (TNBC) remains a clinical challenge due to its aggressive phenotype and limited treatment options for the patients. Many TNBC patients show an inherent defect in the DNA repair capacity primarily by acquiring germline mutations in BRCA1 and BRCA2 genes leading to Homologous Recombination Deficiency (HRD). Epigenetic modifications such as BRCA1 promoter methylation and miRNA expression targeting DNA repair pathway genes have contributed to the HRD phenotype in TNBC. Hence, we aimed to identify microRNAs that are associated with HRD status in the TCGA-BRCA project.

Materials and methods: We implemented a miRNA prediction strategy for identifying miRNAs targeting HR pathway genes using an in silico predicted and experimentally validated list from published literature for their association with genomic instability and factors affecting HRD. In silico analysis was performed to study miRNA expression patterns regulated by DNA methylation and TMB status in the TNBC patients from TCGA-BRCA project. Finally, we analysed selected miRNA expression with immune cell infiltration pattern in the TNBC patient cohort.

Results: Our study identified miRNAs associated with HRD, tumour mutation burden (TMB), and immune cell infiltration. Identified miRNA signatures were associated with the miR-17 ~ 92 cluster, miR-106b ~ 25 cluster, and miR-200b ~ 429 cluster. Pathway analysis of selected miRNAs suggested their association with altered immune cell infiltration in TNBC.

Conclusion: Our study identified 6 'HRD associated miRNAs' such as miR-106b, miR-93, miR-17, miR-20a, miR-200b, and miR-429 as novel miRNA-based signatures associated with HR deficiency in TNBC.

Keywords: Biomarkers; DNA repair; Homologous recombination; MicroRNA; Triple-negative breast cancer.

MeSH terms

  • Biomarkers, Tumor / genetics
  • Breast Neoplasms* / genetics
  • DNA Damage
  • Female
  • Genes, BRCA2
  • Humans
  • MicroRNAs* / genetics
  • Triple Negative Breast Neoplasms* / pathology

Substances

  • MicroRNAs
  • Biomarkers, Tumor