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Hyperinsulinemic-euglycemic Clamps in Conscious, Unrestrained Mice
Published on: November 16, 2011
PKC-theta knockout mice are protected from fat-induced insulin resistance
Jason K Kim1, Jonathan J Fillmore, Mary Jean Sunshine
1Department of Internal Medicine, Yale University School of Medicine, New Haven, Connecticut 06520-8020, USA. jason.k.kim@yale.edu
Abstract:
Insulin resistance plays a primary role in the development of type 2 diabetes and may be related to alterations in fat metabolism. Recent studies have suggested that local accumulation of fat metabolites inside skeletal muscle may activate a serine kinase cascade involving protein kinase C-theta (PKC-theta), leading to defects in insulin signaling and glucose transport in skeletal muscle. To test this hypothesis, we examined whether mice with inactivation of PKC-theta are protected from fat-induced insulin resistance in skeletal muscle. Skeletal muscle and hepatic insulin action as assessed during hyperinsulinemic-euglycemic clamps did not differ between WT and PKC-theta KO mice following saline infusion. A 5-hour lipid infusion decreased insulin-stimulated skeletal muscle glucose uptake in the WT mice that was associated with 40-50% decreases in insulin-stimulated tyrosine phosphorylation of insulin receptor substrate-1 (IRS-1) and IRS-1-associated PI3K activity. In contrast, PKC-theta inactivation prevented fat-induced defects in insulin signaling and glucose transport in skeletal muscle. In conclusion, our findings demonstrate that PKC-theta is a crucial component mediating fat-induced insulin resistance in skeletal muscle and suggest that PKC-theta is a potential therapeutic target for the treatment of type 2 diabetes.
Insights
Protein kinase C-theta (PKC-theta) inactivation protects against fat-induced insulin resistance in skeletal muscle. This finding suggests PKC-theta is a key mediator and potential therapeutic target for type 2 diabetes.
Area of Science:
- Metabolic diseases
- Molecular biology
- Endocrinology
Background:
- Insulin resistance is central to type 2 diabetes, potentially linked to disrupted fat metabolism.
- Skeletal muscle fat metabolite accumulation may activate protein kinase C-theta (PKC-theta), impairing insulin signaling and glucose transport.
Purpose of the Study:
- To investigate if PKC-theta knockout (KO) mice are protected from diet-induced insulin resistance in skeletal muscle.
Main Methods:
- Hyperinsulinemic-euglycemic clamps were used to assess insulin action in wild-type (WT) and PKC-theta KO mice.
- Mice underwent saline or lipid infusions to induce insulin resistance.
- Insulin signaling (IRS-1 phosphorylation) and PI3K activity were measured in skeletal muscle.
Main Results:
- Lipid infusion impaired insulin-stimulated glucose uptake and signaling in WT mice.
- PKC-theta inactivation prevented these fat-induced defects in skeletal muscle glucose transport and insulin signaling.
- No differences in hepatic insulin action were observed between groups post-saline infusion.
Conclusions:
- PKC-theta is essential for mediating fat-induced insulin resistance in skeletal muscle.
- Targeting PKC-theta may offer a novel therapeutic strategy for type 2 diabetes.

