Pathogenic variants in USP7 cause a neurodevelopmental disorder with speech delays, altered behavior, and neurologic

Michael D Fountain1,2, David S Oleson2, Megan E Rech1,2

  • 1Jan and Dan Duncan Neurological Research Institute at Texas Children's Hospital, Houston, TX, USA.

Insights

Haploinsufficiency of USP7 gene variants causes neurodevelopmental disorders, including developmental delay and autism spectrum disorder. This study refines the clinical impact of USP7 haploinsufficiency in affected individuals.

Area of Science:

  • Genetics
  • Neurodevelopmental Disorders
  • Molecular Biology

Background:

  • Haploinsufficiency of the USP7 gene, located at chromosome 16p13.2, has been linked to neurodevelopmental phenotypes.
  • USP7 is crucial for the MAGEL2-USP7-TRIM27 (MUST) complex, impacting endosomal F-actin polymerization and protein recycling.

Purpose of the Study:

  • To further elucidate the phenotypic spectrum associated with USP7 haploinsufficiency.
  • To analyze clinical data from newly identified individuals with USP7 variants.

Main Methods:

  • Genome or exome sequencing and chromosome microarray analysis were used to identify USP7 variants.
  • Clinical features were evaluated through medical record reviews and additional data collection on previously reported cases.

Main Results:

  • Sixteen new individuals with heterozygous USP7 variants were identified, adding to seven previously reported cases.
  • Common clinical manifestations include developmental delay/intellectual disability (DD/ID), hypotonia, eye anomalies, feeding difficulties, GERD, behavioral anomalies, and autism spectrum disorder (ASD).
  • Specific phenotypes include speech delays (nonverbal phenotype) and abnormal brain MRI findings (white matter changes).

Conclusions:

  • The consistent clinical features across 23 individuals support haploinsufficiency of USP7 as the pathogenic mechanism.
  • This study refines the understanding of the clinical impact and phenotypic expression of USP7 haploinsufficiency.
Abstract

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