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Disruptive mutations in TANC2 define a neurodevelopmental syndrome associated with psychiatric disorders

  • University of Washington Center for Mendelian Genomics
  • University of Washington
  • Central South University
  • University of Padua
  • Fondazione Istituto di Ricerca Pediatrica Città della Speranza
  • Baylor College of Medicine
  • University of California at San Francisco
  • UCSF Department of Psychiatry
  • Radboud University Nijmegen
  • Maastricht University
  • Université de Caen
  • Greenwood Genetic Center
  • Istituto di Ricovero e Cura A Carattere Scientifico (IRCCS) Associazione Oasi Maria Santissima Srl
  • Assistance publique – Hôpitaux de Paris
  • Hôpital Armand Trousseau
  • The First People’s Hospital of Yunnan Province
  • Kunming University of Science and Technology
  • University of California at Davis
  • University of Toronto
  • GeneDX Inc
  • Leipzig University
  • University of Melbourne
  • Queensland Children’s Hospital
  • Women's and Children's Hospital Adelaide
  • University of Amsterdam
  • Leiden University
  • Azienda Ospedaliera di Padova
  • Hunan Key Laboratory of Animal Models for Human Diseases

Research output: Contribution to journalArticleAcademicpeer-review

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Abstract

Postsynaptic density (PSD) proteins have been implicated in the pathophysiology of neurodevelopmental and psychiatric disorders. Here, we present detailed clinical and genetic data for 20 patients with likely gene-disrupting mutations in TANC2—whose protein product interacts with multiple PSD proteins. Pediatric patients with disruptive mutations present with autism, intellectual disability, and delayed language and motor development. In addition to a variable degree of epilepsy and facial dysmorphism, we observe a pattern of more complex psychiatric dysfunction or behavioral problems in adult probands or carrier parents. Although this observation requires replication to establish statistical significance, it also suggests that mutations in this gene are associated with a variety of neuropsychiatric disorders consistent with its postsynaptic function. We find that TANC2 is expressed broadly in the human developing brain, especially in excitatory neurons and glial cells, but shows a more restricted pattern in Drosophila glial cells where its disruption affects behavioral outcomes.
Original languageEnglish
Article number4679
JournalNature communications
Volume10
Issue number1
DOIs
Publication statusPublished - 1 Dec 2019

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