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
Summary
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).
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