4.7 Article

The novel adipokine WISP1 associates with insulin resistance and impairs insulin action in human myotubes and mouse hepatocytes

期刊

DIABETOLOGIA
卷 61, 期 9, 页码 2054-2065

出版社

SPRINGER
DOI: 10.1007/s00125-018-4636-9

关键词

Adipokine; Akt; Insulin action; Insulin resistance; Type 2 diabetes; Visceral adipose tissue; WISP1

资金

  1. German Center for Diabetes Research
  2. European Foundation for Study of Diabetes (EFSD/AZ Cellular Plasticity, 'Unravelling the role of WISP1 on metabolic and cellular plasticity in white adipose tissue')
  3. German Institute of Human Nutrition

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Aims/hypothesis Wingless-type (Wnt) inducible signalling pathway protein-1 (WISP1) has been recently identified as a proinflammatory adipokine. We examined whether WISP1 expression and circulating levels are altered in type 2 diabetes and whether WISP1 affects insulin signalling in muscle cells and hepatocytes. hepatocytes, recombinant WISP1 impaired insulin action by inhibiting phosphorylation of insulin receptor. Akt and its substrates glycogen synthase kinase 3 beta, FOXO1 and p70S6 kinase, and inhibiting insulin-stimulated glycogen synthesis and suppression of gluconeogenic genes. Methods Serum and visceral adipose tissue (VAT) biopsies, for analysis of circulating WISP1 levels by ELISA and WISP1 mRNA expression by real-time quantitative RT-PCR, were collected from normal-weight men (control group, n= 33) and obese men with (n = 46) and without type 2 diabetes (n = 56) undergoing surgery. Following incubation of primary human skeletal muscle cells (hSkMCs) and murine AML12 hepatocytes with WISP1 and insulin, insulin signalling was analysed by western blotting. The effect of WISP1 on insulin-stimulated glycogen synthesis and gluconeogenesis was investigated in hSkMCs and murine hepatocytes, respectively. Results Circulating WISP1 levels were higher in obese men (independent of diabetes status) than in normal-weight men (mean [95% CI]: 70.8 [55.2, 86.4] ng/l vs 42.6 [28.5, 56.6] ng/l, respectively; p < 0.05). VAT WISPI expression was 1.9-fold higher in obese men vs normal-weight men (p < 0.05). Circulating WISP1 levels were positively associated with blood glucose in the OGTT and circulating haem oxygenase-1 and negatively associated with adiponectin levels. In hSkMCs and AML12 Conclusions/interpretation Circulating WISP1 levels and WISP1 expression in VAT are increased in obesity independent of glycaemic status. Furthermore, WISP1 impaired insulin signalling in muscle and liver cells.

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