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A Cluster of Autism-Associated Variants on X-Linked NLGN4X Functionally Resemble NLGN4Y

  • Thien A. Nguyen
  • , Kunwei Wu
  • , Saurabh Pandey
  • , Alexander W. Lehr
  • , Yan Li
  • , Michael A. Bemben
  • , John D. Badger
  • , Julie L. Lauzon
  • , Tongguang Wang
  • , Kareem A. Zaghloul
  • , Audrey Thurm
  • , Mahim Jain
  • , Wei Lu
  • , Katherine W. Roche
  • National Institutes of Health
  • Georgetown University
  • University of Calgary
  • Department of Bone and OI
  • Kennedy Krieger Institute

Research output: Contribution to journalArticlepeer-review

69 Scopus citations

Abstract

Autism spectrum disorder (ASD) is more prevalent in males; however, the etiology for this sex bias is not well understood. Many mutations on X-linked cell adhesion molecule NLGN4X result in ASD or intellectual disability. NLGN4X is part of an X-Y pair, with NLGN4Y sharing ∼97% sequence homology. Using biochemistry, electrophysiology, and imaging, we show that NLGN4Y displays severe deficits in maturation, surface expression, and synaptogenesis regulated by one amino acid difference with NLGN4X. Furthermore, we identify a cluster of ASD-associated mutations surrounding the critical amino acid in NLGN4X, and these mutations phenocopy NLGN4Y. We show that NLGN4Y cannot compensate for the functional deficits observed in ASD-associated NLGN4X mutations. Altogether, our data reveal a potential pathogenic mechanism for male bias in NLGN4X-associated ASD.

Original languageEnglish
Pages (from-to)759-768.e7
JournalNeuron
Volume106
Issue number5
DOIs
StatePublished - 3 Jun 2020
Externally publishedYes

Keywords

  • ASD
  • autism
  • ID
  • intellectual disability
  • neuroligin-4X
  • neuroligin-4Y
  • sex-bias
  • synaptic transmission
  • X chromosome
  • Y chromosome

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