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环磷酸腺苷对葡萄糖-6-磷酸酶复合物的翻译后调控是内源性葡萄糖生成的关键决定因素,且受葡萄糖-6-磷酸转运体的控制。

Post-Translational Regulation of the Glucose-6-Phosphatase Complex by Cyclic Adenosine Monophosphate Is a Crucial Determinant of Endogenous Glucose Production and Is Controlled by the Glucose-6-Phosphate Transporter.

作者信息

Soty Maud, Chilloux Julien, Delalande François, Zitoun Carine, Bertile Fabrice, Mithieux Gilles, Gautier-Stein Amandine

机构信息

INSERM U1213, 7-11 rue Paradin, F-69008 Lyon, France.

Université de Lyon, 7-11 rue Paradin, F-69008 Lyon, France.

出版信息

J Proteome Res. 2016 Apr 1;15(4):1342-9. doi: 10.1021/acs.jproteome.6b00110. Epub 2016 Mar 16.

Abstract

The excessive endogenous glucose production (EGP) induced by glucagon participates in the development of type 2 diabetes. To further understand this hormonal control, we studied the short-term regulation by cyclic adenosine monophosphate (cAMP) of the glucose-6-phosphatase (G6Pase) enzyme, which catalyzes the last reaction of EGP. In gluconeogenic cell models, a 1-h treatment by the adenylate cyclase activator forskolin increased G6Pase activity and glucose production independently of any change in enzyme protein amount or G6P content. Using specific inhibitors or protein overexpression, we showed that the stimulation of G6Pase activity involved the protein kinase A (PKA). Results of site-directed mutagenesis, mass spectrometry analyses, and in vitro phosphorylation experiments suggested that the PKA stimulation of G6Pase activity did not depend on a direct phosphorylation of the enzyme. However, the temperature-dependent induction of both G6Pase activity and glucose release suggested a membrane-based mechanism. G6Pase is composed of a G6P transporter (G6PT) and a catalytic unit (G6PC). Surprisingly, we demonstrated that the increase in G6PT activity was required for the stimulation of G6Pase activity by forskolin. Our data demonstrate the existence of a post-translational mechanism that regulates G6Pase activity and reveal the key role of G6PT in the hormonal regulation of G6Pase activity and of EGP.

摘要

胰高血糖素诱导的内源性葡萄糖过度生成(EGP)参与2型糖尿病的发展。为了进一步了解这种激素调控,我们研究了环磷酸腺苷(cAMP)对葡萄糖-6-磷酸酶(G6Pase)的短期调控,该酶催化EGP的最后一步反应。在糖异生细胞模型中,用腺苷酸环化酶激活剂福斯高林处理1小时可增加G6Pase活性和葡萄糖生成,且与酶蛋白量或G6P含量的任何变化无关。使用特异性抑制剂或蛋白过表达,我们表明G6Pase活性的刺激涉及蛋白激酶A(PKA)。定点诱变、质谱分析和体外磷酸化实验结果表明,PKA对G6Pase活性的刺激不依赖于该酶的直接磷酸化。然而,G6Pase活性和葡萄糖释放的温度依赖性诱导提示了一种基于膜的机制。G6Pase由一个G6P转运体(G6PT)和一个催化单元(G6PC)组成。令人惊讶的是,我们证明福斯高林刺激G6Pase活性需要G6PT活性的增加。我们的数据证明了一种调节G6Pase活性的翻译后机制的存在,并揭示了G6PT在G6Pase活性和EGP的激素调控中的关键作用。

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