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首页> 外文期刊>American Journal of Physiology >Glucagon induces the gene expression of aquaporin-8 but not that of aquaporin-9 water channels in the rat hepatocyte
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Glucagon induces the gene expression of aquaporin-8 but not that of aquaporin-9 water channels in the rat hepatocyte

机译:胰高血糖素诱导Aquaporin-8的基因表达,但不是大鼠肝细胞中的水素-9水道的基因表达

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摘要

Glucagon stimulates the vesicle trafficking of aquaporin-8 (AQP8) water channels to the rat hepatocyte canalicular membranes, a process thought to be relevant to glucagoninduced bile secretion. In this study, we investigated whether glucagon is able to modulate the gene expression of hepatocyte AQP8. Glucagon was administered to rats at 0.2 mg/100 g body wt ip in 2, 3, or 6 equally spaced doses for 8, 16, and 36 h, respectively. Immunoblotting analysis showed that hepatic 34-kDa AQP8 was significantly increased by 79 and 107% at 16 and 36 h, respectively. Hepatic AQP9 protein expression remained unaltered. AQP8 mRNA expression, assessed by real-time PCR, was not modified over time, suggesting a posttranscriptional mechanism of AQP8 protein increase. Glucagon effects on AQP8 were directly studied in primary cultured rat hepatocytes. Immunoblotting and confocal immunofluorescence microscopy confirmed the specific glucagon-induced AQP8 upregulation. The RNA polymerase II inhibitor actinomycin D was unable to prevent glucagon effect, providing additional support to the nontranscriptional upregulation of AQP8. Cycloheximide also showed no effect, suggesting that glucagon-induced AQP8 expression does not depend on protein synthesis but rather on protein degradation. Inhibitory experiments suggest that a reduced calpain-mediated AQP8 proteolysis could be involved. The action of glucagon on hepatocyte AQP8 was mimicked by dibutyryl cAMP and suppressed by PKA or phosphatidylinositol-3-kinase (PI3K) inhibitors. In conclusion, our data suggest that glucagon induces the gene expression of rat hepatocyte AQP8 by reducing its degradation, a process that involves cAMP-PKA and PI3K signal pathways. Copyright ? 2009 the American Physiological Society.
机译:胰高血糖素刺激了对大鼠肝细胞穴位膜的水通道蛋白-8(AQP8)水通道的囊泡贩运,这是与血糖血糖诱导的胆汁分泌相关的过程。在这项研究中,我们研究了胰高血糖素是否能够调节肝细胞AQP8的基因表达。将胰高血糖素分别在2,3或6个等间隔的剂量为8,16和36小时的0.2mg / 100g体WT IP的大鼠中施用于大鼠。免疫印迹分析表明,肝脏34-KDA AQP8分别在16和36小时下显着增加79%和107%。肝脏AQP9蛋白表达保持不变。通过实时PCR评估的AQP8 mRNA表达不会随着时间的推移进行修饰,表明AQP8蛋白增加的后术后机制。在原发性培养的大鼠肝细胞中直接研究了对AQP8的胰高血糖素作用。免疫印迹和共聚焦免疫荧光显微镜证实了特定的胰高血糖素诱导的AQP8上调。 RNA聚合酶II抑制剂放线霉素D不能预防胰高血糖素作用,为AQP8的非幕前上调提供额外的载体。环己酰亚胺也没有效果,表明胰高血糖素诱导的AQP8表达不依赖于蛋白质合成,而是对蛋白质降解。抑制实验表明,可以涉及降低的CALPAIN介导的AQP8蛋白水解。胰高血糖素对肝细胞AQP8的作用被二丁酰壳阵营模拟,并被PKA或磷脂酰肌醇-3-激酶(PI3K)抑制剂抑制。总之,我们的数据表明,胰胰高血糖素通过降低其降解诱导大鼠肝细胞AQP8的基因表达,涉及CAMP-PKA和PI3K信号途径的过程。版权? 2009年美国生理社会。

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