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bioRxiv · 10.1101/2025.04.11.648472

Analysis of 14q12 microdeletions reveals novel regulatory loci for the neurodevelopmental disorder-related gene, FOXG1

Abstract

Up to 17% of neurodevelopmental disorders (NDDs) can be explained by pathogenic structural variants (SVs) that disrupt coding regions and elicit gene dosage defects. However, noncoding SVs which can perturb cis-regulatory elements (CREs) and downstream gene expression are understudied. In this study, we describe multiple 14q12 deletions downstream of NDD-related gene FOXG1 in individuals with overlapping phenotypes of FOXG1 haploinsufficiency. We show that deletion of a minimum region of overlap (MRO) reduced FOXG1 expression, disrupted CREs and altered FOXG1s native genomic interactions. Deleting the MRO did not fully eliminate FOXG1 expression, indicating that multiple CREs likely cooperate to regulate FOXG1 and would need to be deleted to completely prevent expression. The transcriptomic profiles of MRO loss overlap in part with FOXG1 loss, including direct FOXG1 targets, indicating converging molecular pathways. These findings expand the scope of FOXG1s complex regulatory region, and more broadly, of regulatory SVs in NDD susceptibility.

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BibTeXRIS

Ramamurthy, A., Bandouil, M. D., Aluru, L., Yoon, E., Bodkin, N., Cheng, J. Z., Biar, C. G., Calhoun, J. D., Carvill, G. L.. 2025-04-17. Analysis of 14q12 microdeletions reveals novel regulatory loci for the neurodevelopmental disorder-related gene, FOXG1. https://doi.org/10.1101/2025.04.11.648472

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