Ir directamente a la navegación principal Ir directamente a la búsqueda Ir directamente al contenido principal

Disruption of RFX family transcription factors causes autism, attention-deficit/hyperactivity disorder, intellectual disability, and dysregulated behavior

  • Holly K. Harris
  • , Tojo Nakayama
  • , Jenny Lai
  • , Boxun Zhao
  • , Nikoleta Argyrou
  • , Cynthia S. Gubbels
  • , Aubrie Soucy
  • , Casie A. Genetti
  • , Victoria Suslovitch
  • , Lance H. Rodan
  • , George E. Tiller
  • , Gaetan Lesca
  • , Karen W. Gripp
  • , Reza Asadollahi
  • , Ada Hamosh
  • , Carolyn D. Applegate
  • , Peter D. Turnpenny
  • , Marleen E.H. Simon
  • , Catharina M.L. Volker-Touw
  • , Koen L.I.van Gassen
  • Ellen van Binsbergen, Rolph Pfundt, Thatjana Gardeitchik, Bert B.A.de Vries, La Donna L. Immken, Catherine Buchanan, Marcia Willing, Tomi L. Toler, Emily Fassi, Laura Baker, Fleur Vansenne, Xiadong Wang, Julian L. Ambrus, Madeleine Fannemel, Jennifer E. Posey, Emanuele Agolini, Antonio Novelli, Anita Rauch, Paranchai Boonsawat, Christina R. Fagerberg, Martin J. Larsen, Maria Kibaek, Audrey Labalme, Alice Poisson, Katelyn K. Payne, Laurence E. Walsh, Kimberly A. Aldinger, Jorune Balciuniene, Cara Skraban, Christopher Gray, Jill Murrell, Caleb P. Bupp, Giulia Pascolini, Paola Grammatico, Martin Broly, Sébastien Küry, Mathilde Nizon, Iqra Ghulam Rasool, Muhammad Yasir Zahoor, Cornelia Kraus, André Reis, Muhammad Iqbal, Kevin Uguen, Severine Audebert-Bellanger, Claude Ferec, Sylvia Redon, Janice Baker, Yunhong Wu, Guiseppe Zampino, Steffan Syrbe, Ines Brosse, Rami Abou Jamra, William B. Dobyns, Lilian L. Cohen, Anne Blomhoff, Cyril Mignot, Boris Keren, Thomas Courtin, Pankaj B. Agrawal, Alan H. Beggs, Timothy W. Yu
  • Boston Children's Hospital
  • Texas Children's Hospital Houston
  • Harvard University
  • Kaiser Permanente
  • Lyon University Hospital
  • University of Zurich
  • Johns Hopkins University
  • Royal Devon & Exeter NHS Foundation Trust
  • Utrecht University
  • Radboud University Nijmegen
  • Department of Clinical and Metabolic Genetics
  • Washington University St. Louis
  • University of Groningen
  • Ciphergene
  • SUNY Buffalo
  • University of Oslo
  • Baylor College of Medicine
  • IRCCS Ospedale pediatrico Bambino Gesù - Roma
  • University of Southern Denmark
  • Indiana University Health
  • Indiana University Bloomington
  • Seattle Children’s Research Institute
  • The Children's Hospital of Philadelphia
  • Spectrum Health
  • University of Rome La Sapienza
  • Nantes Université
  • University of Veterinary and Animal Sciences, Lahore, Pakistan
  • Friedrich-Alexander University Erlangen-Nürnberg
  • Islamia University
  • CHU de Brest
  • Université de Bretagne Occidentale
  • Children's Minnesota
  • Shanxi Children’s Hospital
  • Fondazione Policlinico Universitario “A. Gemelli,” Universita Cattolica del Sacro Cuore
  • Heidelberg University 
  • Leipzig University
  • University of Minnesota Twin Cities
  • Cornell University
  • Sorbonne Université
  • Centre de Référence Déficiences Intellectuelles de Causes Rares

Producción científicarevisión exhaustiva

60 Citas (Scopus)

Resumen

Purpose: We describe a novel neurobehavioral phenotype of autism spectrum disorder (ASD), intellectual disability, and/or attention-deficit/hyperactivity disorder (ADHD) associated with de novo or inherited deleterious variants in members of the RFX family of genes. RFX genes are evolutionarily conserved transcription factors that act as master regulators of central nervous system development and ciliogenesis. Methods: We assembled a cohort of 38 individuals (from 33 unrelated families) with de novo variants in RFX3, RFX4, and RFX7. We describe their common clinical phenotypes and present bioinformatic analyses of expression patterns and downstream targets of these genes as they relate to other neurodevelopmental risk genes. Results: These individuals share neurobehavioral features including ASD, intellectual disability, and/or ADHD; other frequent features include hypersensitivity to sensory stimuli and sleep problems. RFX3, RFX4, and RFX7 are strongly expressed in developing and adult human brain, and X-box binding motifs as well as RFX ChIP-seq peaks are enriched in the cis-regulatory regions of known ASD risk genes. Conclusion: These results establish a likely role of deleterious variation in RFX3, RFX4, and RFX7 in cases of monogenic intellectual disability, ADHD and ASD, and position these genes as potentially critical transcriptional regulators of neurobiological pathways associated with neurodevelopmental disease pathogenesis.

Idioma originalEnglish
Páginas (desde-hasta)1028-1040
Número de páginas13
PublicaciónGenetics in Medicine
Volumen23
N.º6
DOI
EstadoPublished - jun 2021

Huella

Profundice en los temas de investigación de 'Disruption of RFX family transcription factors causes autism, attention-deficit/hyperactivity disorder, intellectual disability, and dysregulated behavior'. En conjunto forman una huella única.

Citar esto