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腺病毒介导的肝细胞中葡萄糖-6-磷酸酶催化亚基过表达的代谢影响

Metabolic impact of adenovirus-mediated overexpression of the glucose-6-phosphatase catalytic subunit in hepatocytes.

作者信息

Seoane J, Trinh K, O'Doherty R M, Gómez-Foix A M, Lange A J, Newgard C B, Guinovart J J

机构信息

Department de Bioquímica i Biologia Molecular, Facultat de Química, Universitat de Barcelona, E08028 Barcelona, Spain.

出版信息

J Biol Chem. 1997 Oct 24;272(43):26972-7. doi: 10.1074/jbc.272.43.26972.

Abstract

Glucose-6-phosphatase (G6Pase) catalyzes the hydrolysis of glucose 6-phosphate (Glu-6-P) to free glucose and, as the last step in gluconeogenesis and glycogenolysis in liver, is thought to play an important role in glucose homeostasis. G6Pase activity appears to be conferred by a set of proteins localized to the endoplasmic reticulum, including a glucose-6-phosphate translocase, a G6Pase phosphohydrolase or catalytic subunit, and glucose and inorganic phosphate transporters in the endoplasmic reticulum membrane. In the current study, we used a recombinant adenovirus containing the cDNA encoding the G6Pase catalytic subunit (AdCMV-G6Pase) to evaluate the metabolic impact of overexpression of the enzyme in primary hepatocytes. We found that AdCMV-G6Pase-treated liver cells contain significantly less glycogen and Glu-6-P, but unchanged UDP-glucose levels, relative to control cells. Further, the glycogen synthase activity state was closely correlated with Glu-6-P levels over a wide range of glucose concentrations in both G6Pase-overexpressing and control cells. The reduction in glycogen synthesis in AdCMV-G6Pase-treated hepatocytes is therefore not a function of decreased substrate availability but rather occurs because of the regulatory effects of Glu-6-P on glycogen synthase activity. We also found that AdCMV-G6Pase-treated-cells had significantly lower rates of lactate production and [3-3H]glucose usage, coupled with enhanced rates of gluconeogenesis and Glu-6-P hydrolysis. We conclude that overexpression of the G6Pase catalytic subunit alone is sufficient to activate flux through the G6Pase system in liver cells. Further, hepatocytes treated with AdCMV-G6Pase exhibit a metabolic profile resembling that of liver cells from patients or animals with non-insulin-dependent diabetes mellitus, suggesting that dysregulation of the catalytic subunit of G6Pase could contribute to the etiology of the disease.

摘要

葡萄糖-6-磷酸酶(G6Pase)催化葡萄糖6-磷酸(Glu-6-P)水解为游离葡萄糖,作为肝脏糖异生和糖原分解的最后一步,被认为在葡萄糖稳态中起重要作用。G6Pase活性似乎由一组定位于内质网的蛋白质赋予,包括葡萄糖-6-磷酸转运体、G6Pase磷酸水解酶或催化亚基,以及内质网膜中的葡萄糖和无机磷酸转运体。在本研究中,我们使用了一种含有编码G6Pase催化亚基cDNA的重组腺病毒(AdCMV-G6Pase)来评估该酶在原代肝细胞中过表达的代谢影响。我们发现,与对照细胞相比,经AdCMV-G6Pase处理的肝细胞中糖原和Glu-6-P含量显著降低,但UDP-葡萄糖水平未变。此外,在G6Pase过表达细胞和对照细胞中,在广泛的葡萄糖浓度范围内,糖原合酶活性状态与Glu-6-P水平密切相关。因此,AdCMV-G6Pase处理的肝细胞中糖原合成的减少不是底物可用性降低的结果,而是由于Glu-6-P对糖原合酶活性的调节作用。我们还发现,经AdCMV-G6Pase处理的细胞乳酸生成率和[3-3H]葡萄糖利用率显著降低,同时糖异生率和Glu-6-P水解率提高。我们得出结论,单独过表达G6Pase催化亚基足以激活肝细胞中G6Pase系统的通量。此外,用AdCMV-G6Pase处理的肝细胞表现出类似于非胰岛素依赖型糖尿病患者或动物肝细胞的代谢特征,这表明G6Pase催化亚基的失调可能与该疾病的病因有关。

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