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Defective glycerol metabolism in aquaporin 9 (AQP9) knockout mice

机译:水通道蛋白9(AQP9)基因敲除小鼠中的甘油代谢不良

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摘要

Aquaporin-9 (AQP9) is an aquaglyceroporin membrane channel shown biophysically to conduct water, glycerol, and other small solutes. Because the physiological role/s of AQP9 remain undefined and the expression sites of AQP9 remain incomplete and conflicting, we generated AQP9 knockout mice. In the absence of physiological stress, knockout mice did not display any visible behavioral or severe physical abnormalities. Immunohistochemical analyses using multiple antibodies revealed AQP9 specific labeling in hepatocytes, epididymis, vas deferens, and in epidermis of wild type mice, but a complete absence of labeling in AQP9−/− mice. In brain, no detectable labeling was observed. Compared with control mice, plasma levels of glycerol and triglycerides were markedly increased in AQP9−/− mice, whereas glucose, urea, free fatty acids, alkaline phosphatase, and cholesterol were not significantly different. Oral administration of glycerol to fasted mice resulted in an acute rise in blood glucose levels in both AQP9−/− and AQP9+/− mice, revealing no defect in utilization of exogenous glycerol as a gluconeogenic substrate and indicating a high gluconeogenic capacity in nonhepatic organs. Obese Leprdb/Leprdb AQP9−/− and obese Leprdb/Leprdb AQP9+/− mice showed similar body weight, whereas the glycerol levels in obese Leprdb/Leprdb AQP9−/− mice were dramatically increased. Consistent with a role of AQP9 in hepatic uptake of glycerol, blood glucose levels were significantly reduced in Leprdb/Leprdb AQP9−/− mice compared with Leprdb/Leprdb AQP9+/− in response to 3 h of fasting. Thus, AQP9 is important for hepatic glycerol metabolism and may play a role in glycerol and glucose metabolism in diabetes mellitus.
机译:Aquaporin-9(AQP9)是一种水生甘油膜膜通道,从生物学上显示可以传导水,甘油和其他小溶质。由于AQP9的生理作用仍然不确定,并且AQP9的表达位点仍然不完整且相互矛盾,因此我们产生了AQP9敲除小鼠。在没有生理压力的情况下,基因敲除小鼠没有表现出任何可见的行为或严重的身体异常。使用多种抗体的免疫组织化学分析显示,野生型小鼠的肝细胞,附睾,输精管和表皮中存在AQP9特异性标记,但在AQP9 -/-小鼠中完全没有标记。在大脑中,未观察到可检测的标记。与对照组小鼠相比,AQP9 -/-小鼠的血浆甘油和甘油三酸酯水平显着升高,而葡萄糖,尿素,游离脂肪酸,碱性磷酸酶和胆固醇则无显着差异。对空腹小鼠口服甘油会导致AQP9 -/-和AQP9 +/- 小鼠血糖水平急剧升高,表明外源性利用没有缺陷甘油作为糖异生底物,表明在非肝器官中具有较高的糖异生能力。肥胖Lepr db / Lepr db AQP9 -/-和肥胖Lepr db / Lepr db AQP9 +/- 小鼠体重相似,而肥胖Lepr db / Lepr db AQP9 -/ − 小鼠急剧增加。与AQP9在肝脏摄取甘油中的作用一致,Lepr db / Lepr db AQP9 -/-小鼠的血糖水平显着降低与禁食3小时后的Lepr db / Lepr db AQP9 +/- 相比。因此,AQP9对肝甘油代谢很重要,并且可能在糖尿病患者的甘油和葡萄糖代谢中发挥作用。

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