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Biallelic inactivating variants in the chromatin remodeler DMAP1 cause a syndromic neurodevelopmental disorder

  • Qin Wang
  • , Andrew K Sobering
  • , Christian Tirrito
  • , Sadegheh Haghshenas
  • , Tina Duelund Hjortshøj
  • , Konrad Platzer
  • , Silke Redler
  • , Michael E March
  • , Leticia S Matsuoka
  • , Hang Xi
  • , Josiah Zoodsma
  • , Yuanhua Chen
  • , Mari Mori
  • , Marco L Leung
  • , Nathalie Couque
  • , Alain Verloes
  • , Antoine Pouzet
  • , Noor Aa Giesbertz
  • , Marleen Eh Simon
  • , Ashley K Yearwood
  • Dominique L Assing, Tzung-Chien Hsieh, Jing-Mei Li, Michael A Levy, Jennifer Kerkhof, Haley McConkey, Jessica Rzasa, Carolyn Lauzon-Young, Raashda A Sulaiman, Firdous Abdulwahab, Hanan E Shamseldin, Naif Am Almontashiri, Manal Afqi, Vettaikorumakankav Vedanarayanan, Maria J Guillen Sacoto, Ingrid M Wentzensen, Nadirah S Damseh, Rivka Birnbaum, Babeth van Ommeren, Saskia Mj Hopman, Maha S Zaki, Gehad Elmakkawy, Erum Afzal, JiHye Kim, Stephanie Efthymiou, Henry Houlden, Ambreen Nusrat, Mathias Toft, Uzma Abdullah, Zafar Iqbal, Shannon Terek, Fowzan S Alkuraya, Elizabeth J Bhoj, Reza Maroofian, Bekim Sadikovic, Hakon Hakonarson, Yuanquan Song, Dong Li*
*Corresponding author for this work

Research output: Contribution to journalArticleAcademicpeer-review

Abstract

Chromatin remodeling is a dynamic epigenetic process that alters chromatin structure to gauge gene accessibility, enabling precise spatiotemporal gene expression, with disruptions often underlying neurodevelopmental disorders (NDDs), although the mechanistic underpinning remains incompletely understood. Despite essential roles in chromatin remodeling processes such as DNA methylation, and histone acetylation and deposition, DMAP1 has not been implicated in human disease. We identified 20 individuals from 16 families with a syndromic NDD carrying homozygous or compound heterozygous variants in DMAP1. Neural-specific knockdown of its Drosophila ortholog, dDMAP1, caused pupal lethality, structural defects in the mushroom body (MB), decreased dendrite length, abnormal social behavior and mechanical-induced seizures. Human reference DMAP1 could largely compensate for the loss of dDMAP1 in knockdown flies, whereas patient variants failed to restore or differentially rescued the phenotypes, confirming their pathogenicity with differing severity. Transcriptome profiling of dDMAP1 knockdown fly brains nominated Cbl and SF1 as downstream targets. Their overexpression rescued the aforementioned lethality and MB defects. Finally, a DNA methylation episignature was identified, leading to the molecular diagnosis of an additional patient. Our findings demonstrate that biallelic inactivating variants in DMAP1 cause a syndromic NDD, expanding the short list of recessive disease-causing genes within the epigenetic machinery.

Original languageEnglish
Article numbere198229
JournalThe Journal of clinical investigation
Volume136
Issue number15
Early online date11 Jun 2026
DOIs
Publication statusPublished - 3 Aug 2026

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