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PMID: 15924140 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Gains of glycosylation comprise an unexpectedly large group of pathogenic mutations.

Nature genetics ·Vol. 37 ·No. 7 ·2005-07-00 ·Pages 692-700

Vogt G, Chapgier A, Yang K, Chuzhanova N, Feinberg J, Fieschi C, Boisson-Dupuis S, Alcais A, Filipe-Santos O, Bustamante J, de Beaucoudrey L, Al-Mohsen I, Al-Hajjar S, Al-Ghonaium A, Adimi P, Mirsaeidi M, Khalilzadeh S, Rosenzweig S, de la Calle Martin O, Bauer TR, Puck JM, Ochs HD, Furthner D, Engelhorn C, Belohradsky B, Mansouri D, Holland SM, Schreiber RD, Abel L, Cooper DN, Soudais C, Casanova JL

Abstract

Mutations involving gains of glycosylation have been considered rare, and the pathogenic role of the new carbohydrate chains has never been formally established. We identified three children with mendelian susceptibility to mycobacterial disease who were homozygous with respect to a missense mutation in IFNGR2 creating a new N-glycosylation site in the IFNgammaR2 chain. The resulting additional carbohydrate moiety was both necessary and sufficient to abolish the cellular response to IFNgamma. We then searched the Human Gene Mutation Database for potential gain-of-N-glycosylation missense mutations; of 10,047 mutations in 577 genes encoding proteins trafficked through the secretory pathway, we identified 142 candidate mutations ( approximately 1.4%) in 77 genes ( approximately 13.3%). Six mutant proteins bore new N-linked carbohydrate moieties. Thus, an unexpectedly high proportion of mutations that cause human genetic disease might lead to the creation of new N-glycosylation sites. Their pathogenic effects may be a direct consequence of the addition of N-linked carbohydrate.

MeSH Terms
Anti-Bacterial Agents/pharmacology BCG Vaccine/adverse effects,pharmacology Cell Line Child Child, Preschool Genetic Predisposition to Disease Glycosylation Humans In Vitro Techniques Interleukin-12/metabolism Leukocytes/drug effects,metabolism,microbiology Mutation, Missense Mycobacterium Infections/genetics,metabolism Receptors, Interferon/deficiency,genetics Tunicamycin/pharmacology
Chemicals
Anti-Bacterial Agents BCG Vaccine IFNGR2 protein, human Receptors, Interferon Tunicamycin Interleukin-12
Authors & Affiliations
32 authors, click to expand affiliations / ORCID
Vogt Guillaume
Laboratory of Human Genetics of Infectious Diseases, University of Paris René Descartes INSERM U550, Necker Medical School, 156 rue de Vaugirard, 75015 Paris, France.
Chapgier Ariane
Yang Kun
Chuzhanova Nadia
Feinberg Jacqueline
Fieschi Claire
Boisson-Dupuis Stéphanie
Alcais Alexandre
Filipe-Santos Orchidée
Bustamante Jacinta
de Beaucoudrey Ludovic
Al-Mohsen Ibrahim
Al-Hajjar Sami
Al-Ghonaium Abdulaziz
Adimi Parisa
Mirsaeidi Mehdi
Khalilzadeh Soheila
Rosenzweig Sergio
de la Calle Martin Oscar
Bauer Thomas R
Puck Jennifer M
Ochs Hans D
Furthner Dieter
Engelhorn Carolin
Belohradsky Bernd
Mansouri Davood
Holland Steven M
Schreiber Robert D
Abel Laurent
Cooper David N
Soudais Claire
Casanova Jean-Laurent
Article Info
Journal
Nature genetics
Abbr.
Nat Genet
ISSN
1061-4036
Published
2005-07-00
Epub
2005-00-29
Pages
692-700
Language
English
Region
United States
NLM ID
9216904
Subset
IM
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