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首页> 外文期刊>American Journal of Physiology >Liver-specific aquaporin 11 knockout mice show rapid vacuolization of the rough endoplasmic reticulum in periportal hepatocytes after amino acid feeding
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Liver-specific aquaporin 11 knockout mice show rapid vacuolization of the rough endoplasmic reticulum in periportal hepatocytes after amino acid feeding

机译:肝脏特异性水通道蛋白11基因敲除小鼠在喂氨基酸后显示出周围肝细胞内粗糙内质网的快速空泡

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Aquaporin 11 (AQP11) is a protein channel expressed intracellularly in multiple organs, yet its physiological function is unclear. Aqp11 knockout (KO) mice die early due to malfunction of the kidney, a result of hydropic degeneration of proximal tubule cells. Here we report the generation of liver-specific Aqp11 KO mice, allowing us to study the role of AQP11 protein in liver of mice with normal kidney function. The unchallenged liver-specific Aqp11 KO mice have normal longevity, their livers appeared normal, and the plasma biochemistries revealed only a minor defect in lipid handling. Fasting of the mice (24 h) induced modest dilatation of the rough endoplasmic reticulum (RER) in the periportal hepatocytes. Refeeding with standard mouse chow induced rapid generation of large RER-derived vacuoles in Aqp11 KO mice hepatocytes. Similar effects were observed following oral administration of pure protein or larger doses of various amino acids. The fasting/refeeding challenge is associated with increased expression of markers of ER stress Grp78 and GADD153 and decreased glutathione levels, suggesting that ER stress may play role in the development of vacuoles in the AQP11-deficient hepatocytes. NMR-based metabolome analysis of livers from mice subject to amino acid challenge showed decreased amount of extractable metabolites in the AQP11-deficient livers and particularly a decrease in glucose levels. In conclusion, in the liver, deletion of AQP11 results in disrupted RER homeostasis and increased sensitivity to RER injury upon metabolic challenge with amino acids.
机译:水通道蛋白11(AQP11)是在多个器官细胞内表达的蛋白质通道,但其生理功能尚不清楚。 Aqp11基因敲除(KO)小鼠因肾功能不全而提前死亡,这是近端肾小管细胞发生水变性的结果。在这里,我们报告了肝脏特异性Aqp11 KO小鼠的生成,使我们能够研究AQP11蛋白在具有正常肾脏功能的小鼠肝脏中的作用。不受挑战的肝脏特异性Aqp11 KO小鼠的寿命长寿正常,肝脏看上去正常,血浆生化指标仅显示脂质处理中的一个小缺陷。小鼠禁食(24小时)会引起门静脉肝细胞中粗面内质网(RER)的适度扩张。用标准的小鼠食物重新喂养可在Aqp11 KO小鼠肝细胞中快速产生大量RER衍生的液泡。口服纯蛋白质或更大剂量的各种氨基酸后,观察到类似的效果。空腹/进食的挑战与内质网应激Grp78和GADD153标记的表达增加和谷胱甘肽水平降低有关,这表明内质网应激可能在AQP11缺陷型肝细胞液泡的形成中起作用。对受氨基酸攻击的小鼠肝脏进行的基于NMR的代谢组分析表明,AQP11缺乏的肝脏中可提取代谢物的量减少,尤其是葡萄糖水平降低。总之,在肝脏中,AQP11的缺失会导致RER稳态紊乱,并在氨基酸代谢激发后提高RER损伤敏感性。

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