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Morbid Obesity Resulting from Inactivation of the Ciliary Protein CEP19 in Humans and Mice
Author(s) -
Adel Shalata,
Maria Celeste M. Ramirez,
Robert J. Desnick,
Nolan Priedigkeit,
Christoph Buettner,
Claudia Lindtner,
Mohammed Mahroum,
Muhammad AbdulGhani,
Feng Dong,
Nazik Arar,
Olga CamachoVanegas,
Rui Zhang,
Sandra Catalina Camacho,
Ying Chen,
Mwafaq Ibdah,
Ralph A. DeFronzo,
Virginia Gillespie,
Kevin A. Kelley,
Brian David Dynlacht,
Sehyun Kim,
Marc Glucksman,
Zvi Borochowitz,
John A. Martignetti
Publication year - 2013
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.2013.10.025
Subject(s) - obesity , microbiology and biotechnology , medicine , biology
Obesity is a major public health concern, and complementary research strategies have been directed toward the identification of the underlying causative gene mutations that affect the normal pathways and networks that regulate energy balance. Here, we describe an autosomal-recessive morbid-obesity syndrome and identify the disease-causing gene defect. The average body mass index of affected family members was 48.7 (range = 36.7-61.0), and all had features of the metabolic syndrome. Homozygosity mapping localized the disease locus to a region in 3q29; we designated this region the morbid obesity 1 (MO1) locus. Sequence analysis identified a homozygous nonsense mutation in CEP19, the gene encoding the ciliary protein CEP19, in all affected family members. CEP19 is highly conserved in vertebrates and invertebrates, is expressed in multiple tissues, and localizes to the centrosome and primary cilia. Homozygous Cep19-knockout mice were morbidly obese, hyperphagic, glucose intolerant, and insulin resistant. Thus, loss of the ciliary protein CEP19 in humans and mice causes morbid obesity and defines a target for investigating the molecular pathogenesis of this disease and potential treatments for obesity and malnutrition.

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