Biologyarticle2026-09-03

Complementary vertebrate Wac models exhibit phenotypes relevant to DeSanto-Shinawi Syndrome

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Abstract

Monogenic syndromes are associated with neurodevelopmental changes that result in cognitive impairments and neurobehavioral phenotypes, including autism and seizures. Limited studies and resources are available to make meaningful headway into the underlying molecular mechanisms that result in these symptoms. One such example is DeSanto-Shinawi Syndrome (DESSH), a rare disorder caused by pathogenic variants in the WAC gene. Individuals with DESSH syndrome exhibit a recognizable craniofacial gestalt, developmental delay/intellectual disability, neurobehavioral symptoms that include autism, ADHD, behavioral difficulties, and seizures. However, no thorough studies from a vertebrate model exist to understand how these changes occur. To overcome this, we developed both murine and zebrafish Wac/wac deletion mutants and studied whether their phenotypes recapitulate those described in individuals with DESSH syndrome. We first show that the two Wac models exhibit craniofacial and behavioral changes, reminiscent of abnormalities found in DESSH syndrome. In addition, each model revealed impacts on GABAergic neurons and further studies showed that the mouse mutants are susceptible to seizures, changes in brain volumes that are different between sexes and relevant behaviors. Finally, we uncovered transcriptional impacts of Wac loss-of-function in mice that will pave the way for future molecular studies into DESSH. These studies present two new vertebrate models that begin to uncover biological underpinnings of DESSH syndrome and elucidate the biology of Wac .

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Authors: Kang‐Han Lee, April M Stafford, Maria Pacheco-Vergara, Karol Cichewicz, César P. Canales, Nicolas Seban, Melissa Corea, Darlene Rahbarian, Kelly E. Bonekamp, Grant R. Gillie, Dariangelly Pacheco-Cruz, Alyssa M Gill, Hye-Eun Hwang, Yong Wook Kim, Katie Uhl, Tara E Jager, Marwan Shinawi, Xiaopeng Li, André Obenaus, Shane Crandall, Juhee Jeong, Alex Nord, Cheol‐Hee Kim, Daniel Vogt

Institutions: Michigan State University, New York University, Chungnam National University, University of California, Irvine, Northwell Health, University of California, Davis, New York College of Health Professions, Center for Genomic Science, Corewell Health, Pediatrics and Genetics