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Solution structure of NEMO zinc finger and impact of an anhidrotic ectodermal dysplasia with immunodeficiency-related point mutation
Authors:Cordier Florence  Vinolo Emilie  Véron Michel  Delepierre Muriel  Agou Fabrice
Affiliation:1 Institut Pasteur, Unité de RMN des Biomolécules; CNRS, URA 2185, F-75015 Paris, France
2 Institut Pasteur, Unité de Régulation Enzymatique des Activités Cellulaires; CNRS, URA 2185, F-75015 Paris, France
Abstract:The regulatory NEMO (NF-κB essential modulator) protein has a crucial role in the canonical NF-κB signaling pathway notably involved in immune and inflammatory responses, apoptosis and oncogenesis. The regulatory domain is located in the C-terminal half of NEMO and contains a classical CCHC-type zinc finger (ZF). We have investigated the structural and functional effects of a cysteine to phenylalanine point mutation (C417F) in the ZF motif, identified in patients with anhidrotic ectodermal dysplasia with immunodeficiency. The solution structures of the wild type and mutant ZF were determined by NMR. Remarkably, the mutant adopts a global ββα fold similar to that of the wild type and retains thermodynamic stability, i.e., the ability to bind zinc with a native-like affinity, although the last zinc-chelating residue is missing. However, the mutation induces enhanced dynamics in the motif and leads to an important loss of stability. A detailed analysis of the wild type solution structure and experimental evidences led to the identification of two possible protein-binding surfaces that are largely destabilized in the mutant. This is sufficient to alter NEMO function, since functional complementation assays using NEMO-deficient pre-B and T lymphocytes show that full-length C417F pathogenic NEMO leads to a partial to strong defect in LPS, IL-1β and TNF-α-induced NF-κB activation, respectively, as compared to wild type NEMO. Altogether, these results shed light onto the role of NEMO ZF as a protein-binding motif and show that a precise structural integrity of the ZF should be preserved to lead to a functional protein-recognition motif triggering full NF-κB activation.
Keywords:TNF, tumor necrosis factor   IL, interleukin   LPS, lipopolysaccharide   IKK, IκB kinase   NEMO, NF-κB essential modulator   IP, incontinentia pigmenti   EDA-ID, ectodermal dysplasia with immunodeficiency   CC, coiled-coil   LZ, leucine zipper   ZF, zinc finger   FOG, Friend of GATA   WT, wild type   TOCSY, total correlated spectroscopy   NOESY, nuclear Overhauser enhancement spectroscopy   RMSD, root-mean-square deviation   IRF, interferon regulatory factor   TCEP, tris(2-carboxyethyl) phosphine
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