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Merck
CN
  • IRF3 promotes adipose inflammation and insulin resistance and represses browning.

IRF3 promotes adipose inflammation and insulin resistance and represses browning.

The Journal of clinical investigation (2016-07-12)
Manju Kumari, Xun Wang, Louise Lantier, Anna Lyubetskaya, Jun Eguchi, Sona Kang, Danielle Tenen, Hyun Cheol Roh, Xingxing Kong, Lawrence Kazak, Rasheed Ahmad, Evan D Rosen
摘要

The chronic inflammatory state that accompanies obesity is a major contributor to insulin resistance and other dysfunctional adaptations in adipose tissue. Cellular and secreted factors promote the inflammatory milieu of obesity, but the transcriptional pathways that drive these processes are not well described. Although the canonical inflammatory transcription factor NF-κB is considered to be the major driver of adipocyte inflammation, members of the interferon regulatory factor (IRF) family may also play a role in this process. Here, we determined that IRF3 expression is upregulated in the adipocytes of obese mice and humans. Signaling through TLR3 and TLR4, which lie upstream of IRF3, induced insulin resistance in murine adipocytes, while IRF3 knockdown prevented insulin resistance. Furthermore, improved insulin sensitivity in IRF3-deficient mice was associated with reductions in intra-adipose and systemic inflammation in the high fat-fed state, enhanced browning of subcutaneous fat, and increased adipose expression of GLUT4. Taken together, the data indicate that IRF3 is a major transcriptional regulator of adipose inflammation and is involved in maintaining systemic glucose and energy homeostasis.

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MILLIPLEX®小鼠细胞因子/趋化因子磁珠试剂盒 - 预混32重 - 免疫学多重分析, Simultaneously analyze multiple cytokine and chemokine biomarkers with Bead-Based Multiplex Assays using the Luminex technology, in mouse serum, plasma and cell culture samples.