Cited 143 time in
- Title
- Reduced oxidative capacity in macrophages results in systemic insulin resistance
- Author(s)
- S B Jung; M J Choi; D Ryu; H S Yi; S E Lee; J Y Chang; H K Chung; Y K Kim; S G Kang; J H Lee; K S Kim; H J Kim; C S Kim; Chul Ho Lee; R W Williams; H Kim; H K Lee; J Auwerx; M Shong
- Bibliographic Citation
- Nature Communications, vol. 9, pp. 1551-1551
- Publication Year
- 2018
- Abstract
- Oxidative functions of adipose tissue macrophages control the polarization of M1-like and M2-like phenotypes, but whether reduced macrophage oxidative function causes systemic insulin resistance in vivo is not clear. Here, we show that mice with reduced mitochondrial oxidative phosphorylation (OxPhos) due to myeloid-specific deletion of CR6-interacting factor 1 (Crif1), an essential mitoribosomal factor involved in biogenesis of OxPhos subunits, have M1-like polarization of macrophages and systemic insulin resistance with adipose inflammation. Macrophage GDF15 expression is reduced in mice with impaired oxidative function, but induced upon stimulation with rosiglitazone and IL-4. GDF15 upregulates the oxidative function of macrophages, leading to M2-like polarization, and reverses insulin resistance in ob/ob mice and HFD-fed mice with myeloid-specific deletion of Crif1. Thus, reduced macrophage oxidative function controls systemic insulin resistance and adipose inflammation, which can be reversed with GDF15 and leads to improved oxidative function of macrophages
- ISSN
- 2041-1723
- Publisher
- Springer-Nature Pub Group
- Full Text Link
- http://dx.doi.org/10.1038/s41467-018-03998-z
- Type
- Article
- Appears in Collections:
- Ochang Branch Institute > Division of National Bio-Infrastructure > 1. Journal Articles
- Files in This Item:
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