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Deficiency for the Ubiquitin Ligase UBE3B in a Blepharophimosis-Ptosis-Intellectual-Disability Syndrome
Author(s) -
Lina BaselVanagaite,
Bruno Dallapiccola,
Ramiro RamírezSolis,
Alexandra Segref,
Hölger Thiele,
Andrew Edwards,
Mark J. Arends,
Xavier Miró,
Jacqueline K. White,
Julie Désir,
Marc Abramowicz,
Maria Lisa Dentici,
Francesca Romana Lepri,
Kay Hofmann,
Adi HarZahav,
Edward J. Ryder,
Natasha A. Karp,
Jeanne Estabel,
Anna-Karin Gerdin,
Christine Podrini,
Neil J. Ingham,
Janine Altmüller,
Gudrun Nürnberg,
Peter Frommolt,
Sonia Abdelhak,
Metsada PasmanikChor,
Osnat Konen,
Richard I. Kelley,
Mordechai Shohat,
Peter Nürnberg,
Jonathan Flint,
Karen P. Steel,
Thorsten Hoppe,
Christian Kubisch,
David J. Adams,
Guntram Borck
Publication year - 2012
Publication title -
the american journal of human genetics
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 6.661
H-Index - 302
eISSN - 1537-6605
pISSN - 0002-9297
DOI - 10.1016/j.ajhg.2012.10.011
Subject(s) - blepharophimosis , ptosis , ubiquitin ligase , ubiquitin , medicine , genetics , biology , surgery , gene
Ubiquitination plays a crucial role in neurodevelopment as exemplified by Angelman syndrome, which is caused by genetic alterations of the ubiquitin ligase-encoding UBE3A gene. Although the function of UBE3A has been widely studied, little is known about its paralog UBE3B. By using exome and capillary sequencing, we here identify biallelic UBE3B mutations in four patients from three unrelated families presenting an autosomal-recessive blepharophimosis-ptosis-intellectual-disability syndrome characterized by developmental delay, growth retardation with a small head circumference, facial dysmorphisms, and low cholesterol levels. UBE3B encodes an uncharacterized E3 ubiquitin ligase. The identified UBE3B variants include one frameshift and two splice-site mutations as well as a missense substitution affecting the highly conserved HECT domain. Disruption of mouse Ube3b leads to reduced viability and recapitulates key aspects of the human disorder, such as reduced weight and brain size and a downregulation of cholesterol synthesis. We establish that the probable Caenorhabditis elegans ortholog of UBE3B, oxi-1, functions in the ubiquitin/proteasome system in vivo and is especially required under oxidative stress conditions. Our data reveal the pleiotropic effects of UBE3B deficiency and reinforce the physiological importance of ubiquitination in neuronal development and function in mammals.

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