4.6 Article

Myeloid adrenergic signaling via CaMKII forms a feedforward loop of catecholamine biosynthesis

期刊

JOURNAL OF MOLECULAR CELL BIOLOGY
卷 9, 期 5, 页码 422-434

出版社

OXFORD UNIV PRESS
DOI: 10.1093/jmcb/mjx046

关键词

CaMKII; adrenaline; tyrosine hydroxylase; catecholamine; UCP1

资金

  1. R01 Award from National Institute of Diabetes and Digestive and Kidney Diseases (NIDDK) [DK110439]
  2. American Diabetes Association [1-13-JF-37]
  3. American Heart Association [15GRNT24940018, 14GRNT20380496]
  4. Innovative Basic Science Award from the American Diabetes Association [1-17-IBS-261]
  5. CoBRE Pilot Award at the University of New Mexico Health Sciences Center (UNMHSC) [P30 (P30GM103400)]
  6. RAC Pilot Award at the University of New Mexico Health Sciences Center (UNMHSC)
  7. UNMCCC pilot Award at the University of New Mexico Health Sciences Center (UNMHSC)
  8. National Institutes of Health [1R21NS091600, P20GM109089]
  9. RMSE [12.1223.2017/AP]

向作者/读者索取更多资源

Type 2 immune response has been shown to facilitate cold-induced thermogenesis and browning of white fat. However, whether alternatively activated macrophages produce catecholamine and substantially promote adaptive thermogenesis in adipose tissue remains controversial. Here, we show that tyrosine hydroxylase (TyrH), a rate-limiting enzyme of catecholamine biosynthesis, was expressed and phosphorylated in adipose-resident macrophages. In addition, the plasma level of adrenaline was increased by cold stress in mice, and treatment of macrophages with adrenaline stimulated phosphorylation of Ca2+/calmodulin-dependent protein kinase II (CaMKII) and TyrH. Genetic and pharmacological inhibition of CaMKII or PKA signaling diminished adrenaline-induced phosphorylation of TyrH in primary macrophages. Consistently, overexpression of constitutively active CaMKII upregulated basal TyrH phosphorylation, while suppressing the stimulatory effect of adrenaline on TyrH in macrophages. Myeloid-specific disruption of CaMKII gamma suppressed both the cold-induced production of norepinephrine and adipose UCP1 expression in vivo and the stimulatory effect of adrenaline on macrophage-dependent activation of brown adipocytes in vitro. Lack of CaMKII signaling attenuated catecholamine production mediated by cytokines IL-4 and IL-13, key inducers of type 2 immune response in primary macrophages. Taken together, these results suggest a feedforward mechanism of adrenaline in adipose-resident macrophages, and that myeloid CaMKII signaling plays an important role in catecholamine production and subsequent beige fat activation.

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