Mapping the genetic architecture of human cortical expansion and its links to neuropsychiatric disorders
Rosenblatt, M.; Vandewouw, M.; Fox-Jurkowitz, H.; Williams, C. M.; Zhong, Y.; Zhi, D.; Zhang, Y.; Westwater, M. L.; Raznahan, A.; Gandal, M. J.; Ge, T.; Scheinost, D.; Smoller, J. W.; Mallard, T. T.
Show abstract
Cortical expansion is a defining feature of human evolution and neurodevelopment, involving the tangential growth and gyrification of the cerebral cortex. Although disruptions to the expansion of the cortex are implicated in diverse brain-based disorders, the genetic architecture underlying this process remains undercharacterized. Here, we integrated GWAS data for five neuroanatomical phenotypes measured in up to 73,800 individuals to model a latent genomic factor capturing the shared genetic basis of cortical surface area, folding, curvature, gyrification, and intracranial volume. Using a multivariate framework, we mapped this pleiotropic architecture across biological scales, identifying novel effector genes, neural cell types, and developmental pathways involved in cortical expansion. Functional genomic evidence indicated that a diverse cellular ensemble contributes to the tangential growth and gyrification of the cortex during prenatal neurodevelopment, with progenitor cell lineages prominently involved. Regional analyses further revealed that genetic influences are spatially heterogeneous and organized along canonical anatomical, functional, and developmental gradients. Finally, cortical expansion exhibited substantial genetic overlap with neurodevelopmental, psychiatric, and neurological disorders, with shared genetic influences often concentrated in prefrontal cortical regions. Together, these findings map the genetic architecture of human cortical expansion and implicate it as a common etiological axis linking evolution, neurodevelopment, and health and disease.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Transcriptome and chromatin accessibility landscapes across 25 distinct human brain regions expand the susceptibility gene set for neuropsychiatric disorders 98%
- Genetic correlates of evolutionary adaptations in cognitive functional brain networks and their relationship to human cognitive functioning and disease 97%
- Unveiling causal regulatory mechanisms through cell-state parallax 97%
Similar papers in this journal
- Effects of gene dosage on cognitive ability: A function-based association study across brain and non-brain processes 97%
- Variant-resolved prediction of context-specific isoform variation with a graph-based attention model 96%
- Cell-type-specific DNA methylation dynamics in the prenatal and postnatal human cortex 96%
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.