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Myeloid Cell-specific Disruption of Period1 and Period2 Exacerbates Diet-induced Inflammation and Insulin Resistance.

Authors :
Hang Xu
Honggui Li
Shih-Lung Woo
Sam-Moon Kim
Shende, Vikram R.
Neuendorff, Nichole
Xin Guo
Ting Guo
Ting Qi
Ya Pei
Yan Zhao
Xiang Hu
Jiajia Zhao
Lulu Chen
Jun-Yuan Ji
Alaniz, Robert C.
Earnest, David J.
Chaodong Wu
Source :
Journal of Biological Chemistry. 6/6/2014, Vol. 289 Issue 23, p16374-16388. 15p.
Publication Year :
2014

Abstract

The circadian clockworks gate macrophage inflammatory responses. Given the association between clock dysregulation and metabolic disorders, we conducted experiments to determine the extent to which over-nutrition modulates macrophage clock function and whether macrophage circadian dysregulation is a key factor linking over-nutrition to macrophage proinflammatory activation, adipose tissue inflammation, and systemic insulin resistance. Our results demonstrate that 1) macrophages from high fat diet-fed mice are marked by dysregulation of the molecular clockworks in conjunction with increased proinflammatory activation, 2) global disruption of the clock genes Period1 (Per1) and Per2 recapitulates this amplified macrophage proinflammatory activation, 3) adoptive transfer of Per1/2-disrupted bone marrow cells into wild-type mice potentiates high fat diet-induced adipose and liver tissue inflammation and systemic insulin resistance, and 4) Per1/2- disrupted macrophages similarly exacerbate inflammatory responses and decrease insulin sensitivity in co-cultured adipocytes in vitro. Furthermore, PPARĪ³ levels are decreased in Per1/2-disrupted macrophages and PPARĪ³2 overexpression ameliorates Per1/2 disruption-associated macrophage proinflammatory activation, suggesting that this transcription factor may link the molecular clockworks to signaling pathways regulating macrophage polarization. Thus, macrophage circadian clock dysregulation is a key process in the physiological cascade by which diet-induced obesity triggers macrophage proinflammatory activation, adipose tissue inflammation, and insulin resistance. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00219258
Volume :
289
Issue :
23
Database :
Academic Search Index
Journal :
Journal of Biological Chemistry
Publication Type :
Academic Journal
Accession number :
96723870
Full Text :
https://doi.org/10.1074/jbc.M113.539601