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三种新的降二萜生物碱的体外抗糖尿病作用及通过PI3K/Akt信号通路的潜在机制

Anti-diabetic effect of three new norditerpenoid alkaloids in vitro and potential mechanism via PI3K/Akt signaling pathway.

作者信息

Tang Dan, Chen Qi-Bin, Xin Xue-Lei, Aisa Haji-Akber

机构信息

The Key Laboratory of Plant Resources and Chemistry of Arid Zone and State Key Laboratory Basis of Xinjiang Indigenous Medicinal Plants Resource Utilization, Xinjiang Technical Institute of Physics and Chemistry, Chinese Academy of Sciences, Urumqi 830011, People's Republic of China.

The Key Laboratory of Plant Resources and Chemistry of Arid Zone and State Key Laboratory Basis of Xinjiang Indigenous Medicinal Plants Resource Utilization, Xinjiang Technical Institute of Physics and Chemistry, Chinese Academy of Sciences, Urumqi 830011, People's Republic of China; University of Chinese Academy of Sciences, Beijing 100039, People's Republic of China.

出版信息

Biomed Pharmacother. 2017 Mar;87:145-152. doi: 10.1016/j.biopha.2016.12.058. Epub 2016 Dec 31.

Abstract

Diabetes is a metabolic disease with the characteristic of high blood glucose (hyperglycemia). In our previous study, we found that nigelladines A-C (compounds A-C), three norditerpenoid alkaloids from the seeds of Nigella glandulifera Freyn (Ranunculaceae) exhibited protein of tyrosine phosphatase 1B (PTP1B) inhibitory activity in vitro. In the present study, we further investigated their anti-diabetes activities in L6 moytubes and illuminated the mechanisms of action of compounds A-C. Several parameters of glucose metabolism such as glucose consumption, glycogen content and hexokinase activity were increased by compounds A-C. The results suggested that compounds A-C improved glucose metabolism through promoting synthesis of glycogen. Expression of PTP1B protein was inhibited by compounds A-C in L6 moytubes. PI3K-dependent Akt phosphorylation was found to be activated by compounds A-C and completely blocked by wortmannin (a PI3K inhibitor). Moreover, the insulin-mediated induction of insulin receptor substrate-1 (IRS-1) and glycogen synthase kinase-3β (GSK-3β) were also suppressed by wortmannin. Western blot results indicated that compounds A-C-induced IRS-1/Akt activation was likely a consequence of PTP1B inhibition. Compounds A-C promoted glycogen synthesis through Akt-mediated GSK3 phosphorylation. Therefore, activation of PI3K/Akt insulin signaling pathway and suppression of PTP1B is the molecular mechanism that contributes to the anti-diabetic effect of compounds A-C in cellular models. The three alkaloids potentially serve as lead compounds for the development of antidiabetic drugs.

摘要

糖尿病是一种以高血糖(血糖过多)为特征的代谢性疾病。在我们之前的研究中,我们发现腺毛黑种草(毛茛科)种子中的三种降二萜生物碱——黑种草胺A - C(化合物A - C)在体外表现出对蛋白酪氨酸磷酸酶1B(PTP1B)的抑制活性。在本研究中,我们进一步研究了它们在L6肌管中的抗糖尿病活性,并阐明了化合物A - C的作用机制。化合物A - C增加了葡萄糖代谢的几个参数,如葡萄糖消耗、糖原含量和己糖激酶活性。结果表明,化合物A - C通过促进糖原合成改善了葡萄糖代谢。化合物A - C在L6肌管中抑制了PTP1B蛋白的表达。发现化合物A - C激活了PI3K依赖的Akt磷酸化,而渥曼青霉素(一种PI3K抑制剂)完全阻断了这种磷酸化。此外,渥曼青霉素也抑制了胰岛素介导的胰岛素受体底物-1(IRS - 1)和糖原合酶激酶-3β(GSK - 3β)的诱导。蛋白质印迹结果表明,化合物A - C诱导的IRS - 1/Akt激活可能是PTP1B抑制的结果。化合物A - C通过Akt介导的GSK3磷酸化促进糖原合成。因此,PI3K/Akt胰岛素信号通路的激活和PTP1B的抑制是化合物A - C在细胞模型中发挥抗糖尿病作用的分子机制。这三种生物碱有可能作为开发抗糖尿病药物的先导化合物。

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