Skip to main navigation Skip to search Skip to main content

Mutations in the Human UBR1 Gene and the Associated Phenotypic Spectrum

  • Maja Sukalo
  • , Ariane Fiedler
  • , Celina Guzmán
  • , Stephanie Spranger
  • , Marie Claude Addor
  • , Jiad N. Mcheik
  • , Manuel Oltra Benavent
  • , Jan M. Cobben
  • , Lynette A. Gillis
  • , Amy G. Shealy
  • , Charu Deshpande
  • , Bita Bozorgmehr
  • , David B. Everman
  • , Eva Lena Stattin
  • , Jan Liebelt
  • , Klaus Michael Keller
  • , Débora Romeo Bertola
  • , Clara D.M. van Karnebeek
  • , Carsten Bergmann
  • , Zhifeng Liu
  • Gesche Düker, Nima Rezaei, Fowzan S. Alkuraya, Gönül Oǧur, Abdullah Alrajoudi, Carlos A. Venegas-Vega, Nienke E. Verbeek, Erick J. Richmond, Özgür Kirbiyik, Prajnya Ranganath, Ankur Singh, Koumudi Godbole, Fouad A.M. Ali, Crésio Alves, Julia Mayerle, Markus M. Lerch, Heiko Witt, Martin Zenker
  • Magdeburg University Hospital
  • Universitätsklinikum Erlangen
  • Hospital Nacional de Niños Dr. Carlos Sáenz Herrera
  • Klinikum Bremen-Mitte
  • Centre Hospitalier Universitaire Vaudois
  • University Hospital
  • Hospital la Fe
  • Amsterdam University Medical Centers
  • Vanderbilt Ingram Cancer Center
  • Cleveland Clinic Foundation
  • King's College London School of Medicine
  • Kariminejad-Najmabadi Pathology and Genetics Center
  • Greenwood Genetic Center
  • Umeå University
  • Women's and Children's Hospital Adelaide
  • Deutsche Klinik für Diagnostik
  • University of São Paulo
  • University of British Columbia
  • Bioscientia Institut für Medizinische Diagnostik GmbH
  • Nanjing Medical University
  • University of Bonn and University Hospital Bonn
  • Tehran University of Medical Sciences
  • King Faisal Specialist Hospital and Research Center
  • Ondokuz Mayis University
  • Al-Thawra Teaching Hospital
  • Hospital General de México “Dr. Eduardo Liceaga,” Secretaría de Salud
  • University Medical Center Utrecht
  • National Children's Hospital
  • Sisli Etfal Research Hospital
  • Nizam's Institute of Medical Sciences
  • Maulana Azad Medical College
  • Deenanath Mangeshkar Hospital and Research Center
  • Ministry of Health, Kingdom of Bahrain
  • Federal University of Bahia
  • Ernst-Moritz-Arndt Universität Greifswald
  • Technical University of Munich

Research output: Contribution to journalArticlepeer-review

42 Scopus citations

Abstract

Johanson-Blizzard syndrome (JBS) is a rare, autosomal recessive disorder characterized by exocrine pancreatic insufficiency, typical facial features, dental anomalies, hypothyroidism, sensorineural hearing loss, scalp defects, urogenital and anorectal anomalies, short stature, and cognitive impairment of variable degree. This syndrome is caused by a defect of the E3 ubiquitin ligase UBR1, which is part of the proteolytic N-end rule pathway. Herein, we review previously reported (n = 29) and a total of 31 novel UBR1 mutations in relation to the associated phenotype in patients from 50 unrelated families. Mutation types include nonsense, frameshift, splice site, missense, and small in-frame deletions consistent with the hypothesis that loss of UBR1 protein function is the molecular basis of JBS. There is an association of missense mutations and small in-frame deletions with milder physical abnormalities and a normal intellectual capacity, thus suggesting that at least some of these may represent hypomorphic UBR1 alleles. The review of clinical data of a large number of molecularly confirmed JBS cases allows us to define minimal clinical criteria for the diagnosis of JBS. For all previously reported and novel UBR1 mutations together with their clinical data, a mutation database has been established at LOVD.

Original languageEnglish
Pages (from-to)521-531
Number of pages11
JournalHuman Mutation
Volume35
Issue number5
DOIs
StatePublished - May 2014

Keywords

  • Aplasia of alae nasi
  • Cognitive impairment
  • Exocrine pancreatic insufficiency
  • Johanson-Blizzard syndrome
  • UBR1

Fingerprint

Dive into the research topics of 'Mutations in the Human UBR1 Gene and the Associated Phenotypic Spectrum'. Together they form a unique fingerprint.

Cite this