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Ultrarare Variants in DNA Damage Repair Genes in Pediatric Acute-Onset Neuropsychiatric Syndrome or Acute Behavioral
Janet L Cunningham1, Jennifer Frankovich2, Robert A Dubin3
1Department of Medical Sciences, Psychiatry, Uppsala University, Uppsala, Sweden.
Insights
Mutations in DNA damage response (DDR) genes may cause acute psychiatric symptoms in children, potentially linked to immune system dysfunction. Further research into DDR deficits could reveal new therapeutic approaches for these conditions.
Area of Science:
- Neuroscience
- Genetics
- Immunology
Background:
- Acute-onset neuropsychiatric symptoms can affect children, triggered by infections or stressors.
- Previous research identified 11 genes in pediatric acute-onset neuropsychiatric syndrome (PANS), including those involved in synaptic function and immunity.
- Three immune-related genes identified in PANS affect the DNA damage response (DDR): PPM1D, CHK2, and RAG1.
Purpose of the Study:
- To investigate the role of DNA damage response (DDR) genes in children presenting with acute psychiatric symptoms or regression.
- To identify mutations in DDR genes in patients diagnosed with PANS or other inflammatory brain conditions.
Main Methods:
- Whole-exome sequencing was performed on 17 pediatric cases with acute psychiatric symptoms.
- Genetic findings from parents were analyzed alongside patient data.
- Included 3 sibling pairs and a family with 4 affected children.
Main Results:
- Seventeen additional cases with mutations in PPM1D and other DDR genes were identified.
- DDR genes implicated include those affecting p53 DNA repair and the Fanconi Anemia Complex.
- Hypothesized mechanism involves genomic instability, cytosolic DNA accumulation, and immune cell activation, impacting neuroplasticity.
Conclusions:
- Defects in DNA repair genes may contribute to acute psychiatric symptoms under stress.
- Further genetic and functional studies are warranted.
- Investigating DDR deficits may lead to novel treatment strategies for these conditions.
Abstract:
Introduction: Acute onset of severe psychiatric symptoms or regression may occur in children with premorbid neurodevelopmental disorders, although typically developing children can also be affected. Infections or other stressors are likely triggers. The underlying causes are unclear, but a current hypothesis suggests the convergence of genes that influence neuronal and immunological function. We previously identified 11 genes in pediatric acute-onset neuropsychiatric syndrome (PANS), in which two classes of genes related to either synaptic function or the immune system were found. Among the latter, three affect the DNA damage response (DDR): PPM1D, CHK2, and RAG1. We now report an additional 17 cases with mutations in PPM1D and other DDR genes in patients with acute onset of psychiatric symptoms and/or regression that their clinicians classified as PANS or another inflammatory brain condition.
Methods:
We analyzed genetic findings obtained from parents and carried out whole-exome sequencing on a total of 17 cases, which included 3 sibling pairs and a family with 4 affected children.
Results:
The DDR genes include clusters affecting p53 DNA repair (PPM1D, ATM, ATR, 53BP1, and RMRP), and the Fanconi Anemia Complex (FANCE, SLX4/FANCP, FANCA, FANCI, and FANCC). We hypothesize that defects in DNA repair genes, in the context of infection or other stressors, could contribute to decompensated states through an increase in genomic instability with a concomitant accumulation of cytosolic DNA in immune cells triggering DNA sensors, such as cGAS-STING and AIM2 inflammasomes, as well as central deficits on neuroplasticity. In addition, increased senescence and defective apoptosis affecting immunological responses could be playing a role.
Conclusion:
These compelling preliminary findings motivate further genetic and functional characterization as the downstream impact of DDR deficits may point to novel treatment strategies.
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