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DR-region of Na + /K + -ATPase is a target to ameliorate hepatic insulin resistance in obese diabetic mice.
- Source :
-
Theranostics [Theranostics] 2020 May 15; Vol. 10 (14), pp. 6149-6166. Date of Electronic Publication: 2020 May 15 (Print Publication: 2020). - Publication Year :
- 2020
-
Abstract
- Reduced hepatic Na <superscript>+</superscript> /K <superscript>+</superscript> -ATPase (NKA) activity and NKAα1 expression are engaged in the pathologies of metabolism diseases. The present study was designed to investigate the potential roles of NKAα1 in hepatic gluconeogenesis and glycogenesis in both hepatocytes and obese diabetic mice. Methods : Insulin resistance was mimicked by glucosamine (GlcN) in either human hepatocellular carcinoma (HepG2) cells or primary mouse primary hepatocytes. Obese diabetic mice were induced by high-fat diet (HFD) feeding for 12 weeks. Results : We found that both NKA activity and NKAα1 protein level were downregulated in GlcN-treated hepatocytes and in the livers of obese diabetic mice. Pharmacological inhibition of NKA with ouabain worsened, while activation of NKAα1 with an antibody against an extracellular DR region of NKAα1 subunit (DR-Ab) prevented GlcN-induced increase in gluconeogenesis and decrease in glycogenesis. Likewise, the above results were also corroborated by the opposite effects of genetic knockout/overexpression of NKAα1 on both gluconeogenesis and glycogenesis. In obese diabetic mice, hepatic activation or overexpression of NKAα1 stimulated the PI3K/Akt pathway to suppress hyperglycemia and improve insulin resistance. More importantly, loss of NKA activities in NKAα1 <superscript>+/-</superscript> mice was associated with more susceptibility to insulin resistance following HFD feeding. Conclusions : Our findings suggest that NKAα1 is a physiological regulator of glucose homoeostasis and its DR-region is a novel target to treat hepatic insulin resistance.<br />Competing Interests: Competing Interests: The authors have declared that no competing interest exists.<br /> (© The author(s).)
- Subjects :
- Animals
Diabetes Mellitus, Experimental pathology
Diabetes Mellitus, Type 2 metabolism
Diabetes Mellitus, Type 2 pathology
Diet, High-Fat
Disease Models, Animal
Hep G2 Cells
Humans
Hyperglycemia etiology
Hyperglycemia metabolism
Hyperglycemia pathology
Male
Mice
Mice, Inbred C57BL
Mice, Knockout
Mice, Obese
Obesity pathology
Primary Cell Culture
Signal Transduction
Sodium-Potassium-Exchanging ATPase genetics
Diabetes Mellitus, Experimental metabolism
Gluconeogenesis
Hepatocytes metabolism
Hyperglycemia prevention & control
Insulin Resistance
Obesity metabolism
Sodium-Potassium-Exchanging ATPase metabolism
Subjects
Details
- Language :
- English
- ISSN :
- 1838-7640
- Volume :
- 10
- Issue :
- 14
- Database :
- MEDLINE
- Journal :
- Theranostics
- Publication Type :
- Academic Journal
- Accession number :
- 32483445
- Full Text :
- https://doi.org/10.7150/thno.46053