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Autism Linked to Increased Oncogene Mutations but Decreased Cancer Rate
Benjamin W Darbro1,2,3,4, Rohini Singh1,5, M Bridget Zimmerman6
1Department of Pediatrics, Division of Medical Genetics, University of Iowa, Iowa City, Iowa, United States of America.
Abstract:
Autism spectrum disorder (ASD) is one phenotypic aspect of many monogenic, hereditary cancer syndromes. Pleiotropic effects of cancer genes on the autism phenotype could lead to repurposing of oncology medications to treat this increasingly prevalent neurodevelopmental condition for which there is currently no treatment. To explore this hypothesis we sought to discover whether autistic patients more often have rare coding, single-nucleotide variants within tumor suppressor and oncogenes and whether autistic patients are more often diagnosed with neoplasms. Exome-sequencing data from the ARRA Autism Sequencing Collaboration was compared to that of a control cohort from the Exome Variant Server database revealing that rare, coding variants within oncogenes were enriched for in the ARRA ASD cohort (p<1.0 x 10(-8)). In contrast, variants were not significantly enriched in tumor suppressor genes. Phenotypically, children and adults with ASD exhibited a protective effect against cancer, with a frequency of 1.3% vs. 3.9% (p<0.001), but the protective effect decreased with age. The odds ratio of neoplasm for those with ASD relative to controls was 0.06 (95% CI: 0.02, 0.19; p<0.0001) in the 0 to 14 age group; 0.35 (95% CI: 0.14, 0.87; p = 0.024) in the 15 to 29 age group; 0.41 (95% CI: 0.15, 1.17; p = 0.095) in the 30 to 54 age group; and 0.49 (95% CI: 0.14, 1.74; p = 0.267) in those 55 and older. Both males and females demonstrated the protective effect. These findings suggest that defects in cellular proliferation, and potentially senescence, might influence both autism and neoplasm, and already approved drugs targeting oncogenic pathways might also have therapeutic value for treating autism.
Insights
Autism spectrum disorder (ASD) is linked to rare gene variants in oncogenes. Individuals with ASD show a reduced risk of cancer, suggesting shared cellular pathways and potential for repurposed cancer drugs to treat autism.
Area of Science:
- Genetics and Oncology
- Neurodevelopmental Disorders
Background:
- Autism spectrum disorder (ASD) shares phenotypic aspects with hereditary cancer syndromes.
- Oncology medications may be repurposed for ASD, a condition lacking current treatments.
Purpose of the Study:
- To investigate rare coding variants in tumor suppressor and oncogenes in autistic patients.
- To determine if autistic patients have a higher incidence of neoplasms.
Main Methods:
- Exome sequencing data from the ARRA Autism Sequencing Collaboration was compared to a control cohort.
- Analysis focused on rare, coding single-nucleotide variants within oncogenes and tumor suppressor genes.
- Phenotypic data on neoplasm diagnosis in ASD patients and controls was analyzed.
Main Results:
- Rare coding variants in oncogenes were significantly enriched in the ASD cohort (p<1.0 x 10(-8)).
- No significant enrichment of variants was found in tumor suppressor genes.
- ASD patients exhibited a reduced frequency of cancer (1.3% vs. 3.9%, p<0.001), a protective effect that diminished with age.
Conclusions:
- Cellular proliferation and senescence defects may influence both autism and neoplasm development.
- Findings suggest potential therapeutic value for existing oncology drugs in treating autism.
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