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Stimulating Wnt signaling reveals context-dependent genetic effects on gene regulation in primary human neural progenitors

  • Nana Matoba,
  • Brandon D. Le,
  • Jordan M. Valone,
  • Justin M. Wolter,
  • Jessica T. Mory,
  • Dan Liang,
  • Nil Aygün,
  • K. Alaine Broadaway,
  • Marielle L. Bond,
  • Karen L. Mohlke,
  • Mark J. Zylka,
  • Michael I. Love,
  • Jason L. Stein

摘要

Gene regulatory effects have been difficult to detect at many non-coding loci associated with brain-related traits, likely because some genetic variants have distinct functions in specific contexts. To explore context-dependent gene regulation, we measured chromatin accessibility and gene expression after activation of the canonical Wnt pathway in primary human neural progenitors (n = 82 donors). We found that TCF/LEF motifs and brain-structure-associated and neuropsychiatric-disorder-associated variants were enriched within Wnt-responsive regulatory elements. Genetically influenced regulatory elements were enriched in genomic regions under positive selection along the human lineage. Wnt pathway stimulation increased detection of genetically influenced regulatory elements/genes by 66%/53% and enabled identification of 397 regulatory elements primed to regulate gene expression. Stimulation also increased identification of shared genetic effects on molecular and complex brain traits by up to 70%, suggesting that genetic variant function during neurodevelopmental patterning can lead to differences in adult brain and behavioral traits.