Social isolation-induced transcriptomic changes in mouse hippocampus impact the synapse and show convergence with human genetic risk for neurodevelopmental phenotypes.
Aodán LaighneachJohn P KellyLieve DesbonnetLaurena HolleranDaniel M KerrDeclan P McKernanGary DonohoeDerek W MorrisPublished in: PloS one (2023)
Early life stress (ELS) can impact brain development and is a risk factor for neurodevelopmental disorders such as schizophrenia. Post-weaning social isolation (SI) is used to model ELS in animals, using isolation stress to disrupt a normal developmental trajectory. We aimed to investigate how SI affects the expression of genes in mouse hippocampus and to investigate how these changes related to the genetic basis of neurodevelopmental phenotypes. BL/6J mice were exposed to post-weaning SI (PD21-25) or treated as group-housed controls (n = 7-8 per group). RNA sequencing was performed on tissue samples from the hippocampus of adult male and female mice. Four hundred and 1,215 differentially-expressed genes (DEGs) at a false discovery rate of < 0.05 were detected between SI and control samples for males and females respectively. DEGS for both males and females were significantly overrepresented in gene ontologies related to synaptic structure and function, especially the post-synapse. DEGs were enriched for common variant (SNP) heritability in humans that contributes to risk of neuropsychiatric disorders (schizophrenia, bipolar disorder) and to cognitive function. DEGs were also enriched for genes harbouring rare de novo variants that contribute to autism spectrum disorder and other developmental disorders. Finally, cell type analysis revealed populations of hippocampal astrocytes that were enriched for DEGs, indicating effects in these cell types as well as neurons. Overall, these data suggest a convergence between genes dysregulated by the SI stressor in the mouse and genes associated with neurodevelopmental disorders and cognitive phenotypes in humans.
Keyphrases
- genome wide
- bipolar disorder
- single cell
- copy number
- genome wide identification
- dna methylation
- room temperature
- cerebral ischemia
- autism spectrum disorder
- early life
- major depressive disorder
- bioinformatics analysis
- healthcare
- genome wide analysis
- mental health
- high fat diet induced
- mechanical ventilation
- attention deficit hyperactivity disorder
- gene expression
- rna seq
- spinal cord
- endothelial cells
- intensive care unit
- intellectual disability
- cell therapy
- stem cells
- oxidative stress
- spinal cord injury
- small molecule
- bone marrow
- subarachnoid hemorrhage
- metabolic syndrome
- heat stress
- electronic health record
- adipose tissue
- white matter
- blood brain barrier
- skeletal muscle
- extracorporeal membrane oxygenation
- high glucose
- data analysis
- deep learning