首页> 美国卫生研究院文献>Physiological Reports >Deletion of glycerol channel aquaporin-9 (Aqp9) impairs long-term blood glucose control in C57BL/6 leptin receptor–deficient (db/db) obese mice
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Deletion of glycerol channel aquaporin-9 (Aqp9) impairs long-term blood glucose control in C57BL/6 leptin receptor–deficient (db/db) obese mice

机译:删除甘油通道水通道蛋白9(Aqp9)会损害C57BL / 6瘦素受体缺陷型(db / db)肥胖小鼠的长期血糖控制

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摘要

Deletion of the glycerol channel aquaporin-9 (Aqp9) reduces postprandial blood glucose levels in leptin receptor–deficient (db/db) obese mice on a C57BL/6 × C57BLKS mixed genetic background. Furthermore, shRNA-mediated reduction of Aqp9 expression reduces liver triacylglycerol (TAG) accumulation in a diet-induced rat model of obesity. The aim of this study was to investigate metabolic effects of Aqp9 deletion in coisogenic db/db mice of the C57BL/6 background. Aqp9wt db/db and Aqp9−/− db/db mice did not differ in body weight and liver TAG contents. On the C57BL/6 genetic background, we observed elevated plasma glucose in Aqp9−/− db/db mice (+1.1 mmol/L, life-time average), while plasma insulin concentration was reduced at the time of death. Glucose levels changed similarly in pentobarbital anesthetized, glucagon challenged Aqp9wt db/db and Aqp9−/− db/db mice. Liver transcriptional profiling did not detect differential gene expression between genotypes. Metabolite profiling revealed a sex independent increase in plasma glycerol (+55%) and glucose (+24%), and reduction in threonate (all at < 0.1) in Aqp9−/− db/db mice compared to controls. Metabolite profiling thus confirms a role of AQP9 in glycerol metabolism of obese C57BL/6 db/db mice. In this animal model of obesity Aqp9 gene deletion elevates plasma glucose and does not alleviate hepatosteatosis.
机译:在C57BL / 6×C57BLKS混合遗传背景下,删除甘油通道水通道蛋白9(Aqp9)可降低瘦素受体缺陷(db / db)肥胖小鼠的餐后血糖水平。此外,在饮食诱导的肥胖大鼠模型中,shRNA介导的Aqp9表达的减少减少了肝脏三酰甘油(TAG)的积累。这项研究的目的是调查Aqp9缺失对C57BL / 6背景的同基因db / db小鼠的代谢影响。 Aqp9 wt db / db和Aqp9 -/- db / db小鼠的体重和肝TAG含量无差异。在C57BL / 6遗传背景下,我们观察到Aqp9 -/- db / db小鼠血浆葡萄糖升高(+1.1 mmol / L,终生平均),而血浆胰岛素浓度在死亡时间。在戊巴比妥麻醉下,胰高血糖素挑战Aqp9 wt db / db Aqp9 -/- db / db 鼠标。肝转录谱未检测到基因型之间的差异基因表达。代谢物分析显示,在< q>与对照组相比,em> Aqp9 -/- db / db 小鼠。因此,代谢物谱分析证实了AQP9在肥胖C57BL / 6 db / db 小鼠甘油代谢中的作用。在这种肥胖动物模型中, Aqp9 基因缺失会增加血浆葡萄糖,并不能减轻肝脂肪变性。

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