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Glucose Intolerance in Aging Male IGFBP-3 Transgenic Mice: Differential Effects of Human IGFBP-3 and Its Mutant IGFBP-3 Devoid of IGF Binding Ability

机译:衰老的雄性IGFBP-3转基因小鼠中的葡萄糖耐量:人类IGFBP-3及其突变IGFBP-3缺乏IGF结合能力的差异作用。

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We have reported a reduction of insulin secretion and glucose intolerance in young mice overexpressing human IGFBP-3 (phosphoglycerate kinase [PGK]BP3) or its mutant Gly56/Gly80/Gly81-IGFBP-3 (PGKmutBP3) under the PGK promoter. Here, we investigated changes in glucose and lipid homeostasis with age in PGKBP3 and PGKmutBP3 mice compared with wild-type mice. Body weight, glucose tolerance, insulin tolerance, visceral fat, interscapular brown adipose tissue (BAT), serum lipids, and pancreas histology were examined at age 3, 6, and 12 months. Murine IGFBP-3 was similar in all mouse genotypes and decreased with age in parallel with total IGF-1. Visceral fat and BAT masses increased in PGKmutBP3 mice, but not in PGKBP3 mice. Glucose tolerance was impaired in both PGKBP3 and PGKmutBP3 mice. However, PGKBP3 mice had increased expression of uncoupling protein-1 in BAT and reduced adiposity, and continued to have smaller pancreatic beta-cell mass and reduced insulin secretion through age 12 months. In contrast, PGKmutBP3 mice developed insulin resistance with age in association with pancreatic beta-cell hyperplasia, impaired expression of uncoupling protein-1 in BAT, and increased adiposity. In addition, both PGKBP3 and PGKmutBP3 mice had elevated glycerol in the circulation, but only PGKBP3 mice had elevated free fatty acids and only PGKmutBP3 mice had elevated triglycerides. Estimated free IGF-1 did not increase with age in transgenic mice, as it did in wild-type mice. Thus, overexpression of human IGFBP-3 or its mutant devoid of IGF binding ability leads to glucose intolerance with, however, different effects on insulin secretion, insulin sensitivity, and lipid homeostasis in aging mice.
机译:我们已经报道了在PGK启动子下过表达人IGFBP-3(磷酸甘油酸激酶[PGK] BP3)或其突变体Gly56 / Gly80 / Gly81-IGFBP-3(PGKmutBP3)的年轻小鼠中胰岛素分泌和葡萄糖耐量的减少。在这里,我们调查了与野生型小鼠相比,PGKBP3和PGKmutBP3小鼠中葡萄糖和脂质体内稳态随年龄的变化。在3、6和12个月大时检查体重,葡萄糖耐量,胰岛素耐量,内脏脂肪,肩s间褐色脂肪组织(BAT),血脂和胰腺组织学。小鼠IGFBP-3在所有小鼠基因型中均相似,并且随着年龄的增长而降低,与总IGF-1平行。 PGKmutBP3小鼠的内脏脂肪和BAT质量增加,但PGKBP3小鼠则没有。 PGKBP3和PGKmutBP3小鼠的葡萄糖耐量均受损。但是,PGKBP3小鼠的BAT中解偶联蛋白1的表达增加,脂肪减少,并且直到12个月大时,胰腺β细胞的数量仍然减少,胰岛素分泌减少。相比之下,PGKmutBP3小鼠随着年龄的增长而出现胰岛素抵抗,并伴有胰岛β细胞增生,BAT中解偶联蛋白1的表达受损以及肥胖增加。此外,PGKBP3和PGKmutBP3小鼠的血液中甘油均升高,但只有PGKBP3小鼠的游离脂肪酸升高,只有PGKmutBP3小鼠的甘油三酸酯升高。估计的免费IGF-1在转基因小鼠中不会随年龄增加而增加,就像在野生型小鼠中一样。因此,人IGFBP-3的过表达或其缺乏IGF结合能力的突变体会导致葡萄糖耐受不良,但是对衰老小鼠的胰岛素分泌,胰岛素敏感性和脂质稳态具有不同的影响。

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