Concerted action of wild-type and mutant TNF receptors enhances inflammation in TNF receptor 1-associated periodic fever syndrome
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- 10 May 2010
- journal article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 107 (21), 9801-9806
- https://doi.org/10.1073/pnas.0914118107
Abstract
TNF, acting through p55 tumor necrosis factor receptor 1 (TNFR1), contributes to the pathogenesis of many inflammatory diseases. TNFR-associated periodic syndrome (TRAPS, OMIM 142680) is an autosomal dominant autoinflammatory disorder characterized by prolonged attacks of fevers, peritonitis, and soft tissue inflammation. TRAPS is caused by missense mutations in the extracellular domain of TNFR1 that affect receptor folding and trafficking. These mutations lead to loss of normal function rather than gain of function, and thus the pathogenesis of TRAPS is an enigma. Here we show that mutant TNFR1 accumulates intracellularly in peripheral blood mononuclear cells of TRAPS patients and in multiple cell types from two independent lines of knockin mice harboring TRAPS-associated TNFR1 mutations. Mutant TNFR1 did not function as a surface receptor for TNF but rather enhanced activation of MAPKs and secretion of proinflammatory cytokines upon stimulation with LPS. Enhanced inflammation depended on autocrine TNF secretion and WT TNFR1 in mouse and human myeloid cells but not in fibroblasts. Heterozygous TNFR1-mutant mice were hypersensitive to LPS-induced septic shock, whereas homozygous TNFR1-mutant mice resembled TNFR1-deficient mice and were resistant to septic shock. Thus WT and mutant TNFR1 act in concert from distinct cellular locations to potentiate inflammation in TRAPS. These findings establish a mechanism of pathogenesis in autosomal dominant diseases where full expression of the disease phenotype depends on functional cooperation between WT and mutant proteins and also may explain partial responses of TRAPS patients to TNF blockade.Keywords
This publication has 39 references indexed in Scilit:
- Horror Autoinflammaticus: The Molecular Pathophysiology of Autoinflammatory DiseaseAnnual Review of Immunology, 2009
- Falling into TRAPS – receptor misfolding in the TNF receptor 1-associated periodic fever syndromeArthritis Research & Therapy, 2007
- Clinical significance of P46L and R92Q substitutions in the tumour necrosis factor superfamily 1A geneAnnals Of The Rheumatic Diseases, 2006
- A Proposed Classification of the Immunological DiseasesPLoS Medicine, 2006
- Abnormal disulfide-linked oligomerization results in ER retention and altered signaling by TNFR1 mutants in TNFR1-associated periodic fever syndrome (TRAPS)Blood, 2006
- Etanercept plus colchicine treatment in a child with tumour necrosis factor receptor-associated periodic syndrome abolishes auto-inflammatory episodes without normalising the subclinical acute phase responseEuropean Journal of Pediatrics, 2005
- Review: D-Galactosamine lethality model: scope and limitationsInnate Immunity, 2004
- The TNF Receptor-Associated Periodic Syndrome (TRAPS)Medicine, 2002
- TNF-R1 Signaling: A Beautiful PathwayScience, 2002
- Hypothermia as an indicator of the acute effects of lipopolysaccharides: comparison with serum levels of IL1β, IL6 and TNFαGeneral Pharmacology: The Vascular System, 1996