Abstract

The hexosamine biosynthesis pathway (HBP) regulates the post-translational modification of nuclear and cytoplasmic protein by O-linked N-acetylglucosamine (O-GlcNAc). Numerous studies have demonstrated increased flux through this pathway contributes to the development of β-cell dysfunction. The effect of decreased O-GlcNAc on the maintenance of normal β-cell function, however, is not well understood. We studied transgenic mice that over express β-N-acetylglucosaminidase (O-GlcNAcase), an enzyme that catalyzes the removal of O-GlcNAc from proteins, in the pancreatic β-cell under control of the rat insulin promoter. 3-4-Month-old O-GlcNAcase transgenic mice have higher glucose excursions with a concomitant decrease in circulating insulin levels, insulin mRNA levels, and total islet insulin content. In older (8-9-month-old) O-GlcNAcase transgenic mice glucose tolerance is no longer impaired. This is associated with increased serum insulin, islet insulin content, and insulin mRNA in the O-GlcNAcase transgenic mice. These improvements in β-cell function with aging are associated with increased angiogenesis and increased VEGF expression, with parallel increases in activation of Akt and expression of PGC1α. The biphasic effects as a function of age are consistent with published observations of mice with increased O-GlcNAc in islets and demonstrate that O-GlcNAc signaling exerts multiple effects on both insulin secretion and islet survival.

Highlights

  • The hexosamine biosynthesis pathway (HBP) regulates the post-translational modification of nuclear and cytoplasmic protein by O-linked N-acetylglucosamine (O-GlcNAc)

  • We studied transgenic mice that over express ␤-N-acetylglucosaminidase (O-GlcNAcase), an enzyme that catalyzes the removal of O-GlcNAc from proteins, in the pancreatic ␤-cell under control of the rat insulin promoter. 3– 4-Month-old O-GlcNAcase transgenic mice have higher glucose excursions with a concomitant decrease in circulating insulin levels, insulin mRNA levels, and total islet insulin content

  • Glucose Tolerance Improves with Age in Mice with OGlcNAcase Overexpression—Based on the observation that aging normally leads to increased O-GlcNAc levels [28, 29] and that elevated O-GlcNAc impairs ␤-cell function [11,12,13,14], we examined the effect of O-GlcNAcase on ␤-cell function in aged mice

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Summary

EXPERIMENTAL PROCEDURES

Experimental Animals and Generation of Rat Insulin Promoter-O-GlcNAcase Transgenic Mice—A bluescript SKϩ/Ϫ phagemid (Stratagene, La Jolla, CA), modified with the rat insulin promoter, human GFA gene and SV40 polyadenosine tail, had been used previously to generate an islet-specific GFA transgenic C57/BL6 mouse line [13]. This plasmid was modified by removal of the human GFA gene and insertion of the human O-GlcNAcase gene, a gift of Gerald Hart (The Johns Hopkins University).

RESULTS
3–4 Months 8–9 Months
Findings
DISCUSSION

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