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Hematopoietic IKBKE limits the chronicity of inflammasome priming and metaflammation
Author(s) -
Meghana Patel,
William G. Bernard,
N Milev,
William P. Cawthorn,
Nichola Figg,
Dan Hart,
Xavier Prieur,
Sam Virtue,
Krisztina Hegyi,
Stéphanie Bonnafous,
Béatrice BaillyMaitre,
Yajing Chu,
Julian L. Griffin,
Ziad Mallat,
Robert V. Considine,
Albert Tran,
Philippe Gual,
Osamu Takeuchi,
Shizuo Akira,
Antonio VidalPuig,
Martin R. Bennett,
Jaswinder K. Sethi
Publication year - 2014
Publication title -
proceedings of the national academy of sciences
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 5.011
H-Index - 771
eISSN - 1091-6490
pISSN - 0027-8424
DOI - 10.1073/pnas.1414536112
Subject(s) - inflammation , inflammasome , biology , immunology , cancer research
Obesity increases the risk of developing life-threatening metabolic diseases including cardiovascular disease, fatty liver disease, diabetes, and cancer. Efforts to curb the global obesity epidemic and its impact have proven unsuccessful in part by a limited understanding of these chronic progressive diseases. It is clear that low-grade chronic inflammation, or metaflammation, underlies the pathogenesis of obesity-associated type 2 diabetes and atherosclerosis. However, the mechanisms that maintain chronicity and prevent inflammatory resolution are poorly understood. Here, we show that inhibitor of κB kinase epsilon (IKBKE) is a novel regulator that limits chronic inflammation during metabolic disease and atherosclerosis. The pathogenic relevance of IKBKE was indicated by the colocalization with macrophages in human and murine tissues and in atherosclerotic plaques. Genetic ablation of IKBKE resulted in enhanced and prolonged priming of the NLRP3 inflammasome in cultured macrophages, in hypertrophic adipose tissue, and in livers of hypercholesterolemic mice. This altered profile associated with enhanced acute phase response, deregulated cholesterol metabolism, and steatoheptatitis. Restoring IKBKE only in hematopoietic cells was sufficient to reverse elevated inflammasome priming and these metabolic features. In advanced atherosclerotic plaques, loss of IKBKE and hematopoietic cell restoration altered plaque composition. These studies reveal a new role for hematopoietic IKBKE: to limit inflammasome priming and metaflammation.

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