Identification and characterization of ADAR1 mutations and changes in gene expression in human cancers

Anna Valentine1, Korey Bosart2, Wesley Bush3

  • 1Biology Program, The Ohio State University, Marion, United States.

Cancer Genetics
|November 3, 2024
PubMed

Insights

Mutations in Adenosine deaminase acting on RNA 1 (ADAR1) are linked to cancer. This study found specific ADAR1 mutations destabilize dsRNA interactions, impacting tumor suppressor BLCAP expression and cancer cell survival.

Area of Science:

  • Molecular Biology
  • Genomics
  • Oncology

Background:

  • Adenosine deaminase acting on RNA 1 (ADAR1) regulates RNA editing and is implicated in various cancers.
  • The precise role of ADAR1 mutations in tumor development remains unclear.
  • Understanding ADAR1's function in cancer is crucial for developing targeted therapies.

Purpose of the Study:

  • To identify and characterize ADAR1 mutations and expression changes in cancer.
  • To investigate the functional impact of ADAR1 mutations on protein stability and dsRNA interaction.
  • To explore the relationship between ADAR1 alterations and other cancer-associated genes.

Main Methods:

  • Analysis of cancer genome data from CSOMIC and cBioPortal.
  • In silico protein structure analysis to predict mutation effects.
  • Gene expression profiling to assess ADAR1 and BLCAP levels.
  • Epistatic analysis using TCGA pan-cancer data.

Main Results:

  • Identified high-frequency ADAR1 substitutions, including R767, potentially destabilizing dsRNA binding.
  • Observed increased BLCAP expression in cancers with reduced ADAR1 expression.
  • Found mutual exclusivity between ADAR1 and BLCAP mutations, suggesting BLCAP's essential role when ADAR1 is impaired.
  • Detected significant ADAR1 mutation burden in endometrial cancers.

Conclusions:

  • ADAR1 mutations, particularly those affecting dsRNA interaction domains, contribute to cancer development.
  • ADAR1's role as a tumor suppressor is linked to its regulation of BLCAP.
  • Impaired ADAR1 function necessitates the essentiality of PTEN, AKT1, and BLCAP for cancer cell survival.