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Uncarboxylated osteocalcin ameliorates hepatic glucose and lipid metabolism in KKAy mice via activating insulin signaling pathway.

Abstract
Osteocalcin, expressed in osteoblasts of the bone marrow, undergoes post-translational carboxylation and deposits in mineralized bone matrix. A portion of osteocalcin remains uncarboxylated (uncarboxylated osteocalcin, GluOC) that is released into blood where it functions as a hormone to regulate insulin secretion and insulin sensitivity. As insulin resistance is closely associated with metabolic syndrome, this study is aimed to elucidate how GluOC regulates glucose and lipid metabolism in KKAy mice, an animal model displaying obese, hyperglycemia, hyperinsulinemia, insulin resistance, and hepatic steatosis. GluOC (3, 30 ng/g per day, ig) was orally administered to female KKAy mice for 4 weeks. Whole-body insulin sensitivity, glucose metabolism, hepatic steatosis, dyslipidemia were examined using routine laboratory assays. We found that GluOC administration significantly enhanced insulin sensitivity in KKAy mice by activating hepatic IRβ/PI3K/Akt pathway and elevated the whole-body insulin sensitivity with decreased FPI and HOMA-IR index. Furthermore, GluOC administration alleviated hyperglycemia through suppressing gluconeogenesis and promoting glycogen synthesis in KKAy mice and in cultured hepatocytes in vitro. Moreover, GluOC administration dose-dependently ameliorated dyslipidemia and attenuated hepatic steatosis in KKAy mice by inhibiting hepatic de novo lipogenesis and promoting fatty-acid β-oxidation. These results demonstrate that GluOC effectively enhances hepatic insulin sensitivity, improves hyperglycemia and ameliorates hepatic steatosis in KKAy mice, suggesting that GluOC could be a promising drug candidate for treating metabolic syndrome.
AuthorsXiao-Lin Zhang, Ya-Nan Wang, Lu-Yao Ma, Zhong-Sheng Liu, Fei Ye, Jian-Hong Yang
JournalActa pharmacologica Sinica (Acta Pharmacol Sin) Vol. 41 Issue 3 Pg. 383-393 (Mar 2020) ISSN: 1745-7254 [Electronic] United States
PMID31659239 (Publication Type: Journal Article)
Chemical References
  • Blood Glucose
  • Insulin
  • Osteocalcin
Topics
  • Administration, Oral
  • Animals
  • Blood Glucose (metabolism)
  • Diabetes Mellitus, Experimental (metabolism)
  • Disease Models, Animal
  • Female
  • Glucose Tolerance Test
  • Insulin (metabolism)
  • Lipid Metabolism
  • Liver (metabolism)
  • Mice
  • Mice, Obese
  • Osteocalcin (administration & dosage, metabolism)
  • Signal Transduction

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