| Literature DB >> 21622647 |
Marjorie Hubeau1, Flora Ngadjeua, Anne Puel, Laura Israel, Jacqueline Feinberg, Maya Chrabieh, Kiran Belani, Christine Bodemer, Isabelle Fabre, Alessandro Plebani, Stéphanie Boisson-Dupuis, Capucine Picard, Alain Fischer, Alain Israel, Laurent Abel, Michel Veron, Jean-Laurent Casanova, Fabrice Agou, Jacinta Bustamante.
Abstract
Nuclear factor-κB essential modulator (NEMO), the regulatory subunit of the IκB kinase complex, is a critical component of the NF-κB pathway. Hypomorphic mutations in the X-linked human NEMO gene cause various forms of anhidrotic ectodermal dysplasia with immunodeficiency (EDA-ID). All known X-linked EDA-ID-causing mutations impair NEMO protein expression, folding, or both. We describe here 2 EDA-ID-causing missense mutations that affect the same residue in the CC2-LZ domain (D311N and D311G) that do not impair NEMO production or folding. Structural studies based on pull-down experiments showed a defect in noncovalent interaction with K63-linked and linear polyubiquitin chains for these mutant proteins. Functional studies on the patients' cells showed an impairment of the classic NF-κB signaling pathways after activation of 2 NEMO ubiquitin-binding-dependent receptors, the TNF and IL-1β receptors, and in the CD40-dependent NF-κB pathway. We report the first human NEMO mutations responsible for X-linked EDA-ID found to affect the polyubiquitin binding of NEMO rather than its expression and folding. These experiments demonstrate that the binding of human NEMO to polyubiquitin is essential for NF-κB activation. They also demonstrate that the normal expression and folding of NEMO do not exclude a pathogenic role for NEMO mutations in patients with EDA-ID.Entities:
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Year: 2011 PMID: 21622647 PMCID: PMC3251327 DOI: 10.1182/blood-2010-10-315234
Source DB: PubMed Journal: Blood ISSN: 0006-4971 Impact factor: 22.113