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Targeted RNA Sequencing Assay to Characterize Gene Expression and Genomic Alterations
Published on: August 4, 2016
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.
Abstract:
ADAR1 (Adenosine deaminase action on RNA1) is involved in post-transcriptional RNA editing. ADAR1 mutations have been identified in many cancers but its role in tumor formation is still not well understood. Here we used available cancer genomes deposited on CSOMIC and cBioPortal to identify and characterize mutations and changes in ADAR1 expression in cancer cells. We identify several high frequency substitutions including one at R767 which is located in one of the dsRNA interacting domains. In silico protein structure analysis suggest the R767 mutations affect the protein stability and are likely to destabilize interaction with dsRNA. Gene expression analysis shows that in samples with under-expressed ADAR1, there is a statistically significant increase in expression of BLCAP (Bladder Cancer Associated Protein). Although BLCAP was initially identified in bladder cancers, more recent evidence shows that it is a tumor suppressor and BLCAP mutations have been detected in many cancer cells. Epistatic analysis using the cBioPortal mutual exclusivity calculator for the TCGA pan-cancer data shows that co-mutations between ADAR1 and other genes regulated by it are likely in cancer cells except for PTEN, AKT1 and BLCAP. This suggests that when ADAR1 function is impaired, PTEN, AKT1 and BLCAP become essential for survival of cancer cells. We also identified several samples with high mutation burden between ADAR1 and other genes regulated primarily in endometrial cancers. Finally, we show that the deaminase domain is highly conserved in metazoans and mutations within conserved residues do occur in human cancers suggesting that destabilization of the enzyme function is contributing to cancer development.
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.
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