Abstract

The Znt7 gene encodes a ubiquitously expressed zinc transporter that is involved in transporting cytoplasmic zinc into the Golgi apparatus and a ZnT7-containing vesicular compartment. Overexpression of ZnT7 in the pancreatic β-cell stimulates insulin synthesis and secretion through regulation of insulin gene transcription. In this study, we demonstrate that ZnT7 is expressed in the mouse skeletal muscle. The activity of the insulin signaling pathway was down-regulated in myocytes isolated from the femoral muscle of Znt7 knock-out (KO) mice. High fat diet consumption (45% kcal) induced weight gain in male Znt7 KO mice but not female Znt7 KO mice. Male Znt7 KO mice fed the high fat diet at 5 weeks of age for 10 weeks exhibited hyperglycemia in the non-fasting state. Oral glucose tolerance tests revealed that male Znt7 KO mice fed the high fat diet had severe glucose intolerance. Insulin tolerance tests showed that male Znt7 KO mice were insulin-resistant. Diet-induced insulin resistance in male Znt7 KO mice was paralleled by a reduction in mRNA expression of Insr, Irs2, and Akt1 in the primary skeletal myotubes isolated from the KO mice. Overexpression of ZnT7 in a rat skeletal muscle cell line (L6) increased Irs2 mRNA expression, Irs2 and Akt phosphorylation, and glucose uptake. We conclude that a combination of decreased insulin secretion and increased insulin resistance accounts for the glucose intolerance observed in Znt7 KO mice.

Highlights

  • Zinc transporter 7 (ZnT7) influences insulin synthesis/secretion in ␤-cells

  • Using a rat pancreatic ␤-cell line overexpressing ZnT7, we demonstrated that ZnT7 influenced insulin synthesis and secretion [21]

  • ZnT7 Is Expressed in Mouse Skeletal Muscles—In order to examine a potential role of ZnT7 in modulating glucose disposal in skeletal muscles, we first determined the expression of ZnT7 in the mouse skeletal muscle by immunohistochemistry

Read more

Summary

Background

Zinc transporter 7 (ZnT7) influences insulin synthesis/secretion in ␤-cells. Overexpression of ZnT7 in a rat skeletal muscle cell line (L6) increased Irs mRNA expression, Irs and Akt phosphorylation, and glucose uptake. Diet-induced Glucose Intolerance in Znt KO Mice secreting ␤-cells results in elevated insulin synthesis and secretion [21]. Using a rat pancreatic ␤-cell line overexpressing ZnT7, we demonstrated that ZnT7 influenced insulin synthesis and secretion [21] It is currently unclear whether ZnT7 affects body glucose homeostasis in mice by regulating the insulin signaling pathway in insulin-sensitive peripheral tissues. Our results showed that male Znt KO mice were more susceptible to diet-induced glucose intolerance and insulin resistance than the control. Fasting blood insulin levels in male Znt KO mice fed the high fat diet was lower than the control. Our data demonstrated that ZnT7 affected Irs (insulin receptor substrate 2) expression and phosphorylation of Irs and Akt (v-akt murine thymoma viral oncogene homolog) in Znt KO myotubes as well as L6 myotubes overexpressing ZnT7

EXPERIMENTAL PROCEDURES
RESULTS
DISCUSSION
Full Text
Published version (Free)

Talk to us

Join us for a 30 min session where you can share your feedback and ask us any queries you have

Schedule a call