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抑制二肽基肽酶-4(DPP-4)是小檗碱降血糖作用的机制之一。

Inhibition of dipeptidyl peptidase IV (DPP IV) is one of the mechanisms explaining the hypoglycemic effect of berberine.

机构信息

Department of pharmaceutical sciences, Faculty of Pharmacy, University of Jordan, Jordan.

出版信息

J Enzyme Inhib Med Chem. 2009 Oct;24(5):1061-6. doi: 10.1080/14756360802610761.

Abstract

Berberine was investigated as an inhibitor of human dipeptidyl peptidase IV (DPP IV) in an attempt to explain its anti-hyperglycemic activities. The investigation included simulated docking experiments to fit berberine within the binding pocket of DPP IV. Berberine was found to readily fit within the binding pocket of DPP IV in a low energy orientation characterized with optimal electrostatic attractive interactions bridging the isoquinolinium positively charged nitrogen atom (berberine) and the negatively charged acidic residue of glutamic acid-205 (GLU205) of DPP IV. Experimentally, berberine was found to inhibit human recombinant DPP IV in vitro with IC(50) = 13.3 microM. Our findings suggest that DPP IV inhibition is, at least, one of the mechanisms that explain the anti-hyperglycemic activity of berberine. The fact that berberine was recently reported to potently inhibit the pro-diabetic target human protein tyrosine phosphatase 1B (h-PTP 1B) discloses a novel dual natural h-PTP 1B/DPP IV inhibitor.

摘要

小檗碱被研究为一种人二肽基肽酶 IV(DPP IV)抑制剂,试图解释其抗高血糖活性。该研究包括模拟对接实验,以适应小檗碱在 DPP IV 的结合口袋内。研究发现,小檗碱很容易在 DPP IV 的结合口袋内以低能量取向适应,其特征是具有最佳静电吸引相互作用,桥接异喹啉鎓正电荷氮原子(小檗碱)和 DPP IV 的带负电荷的酸性谷氨酸-205(GLU205)残基。实验发现,小檗碱体外抑制人重组 DPP IV,IC(50)= 13.3 microM。我们的研究结果表明,DPP IV 抑制至少是解释小檗碱抗高血糖活性的机制之一。最近有报道称,小檗碱能有效抑制促糖尿病的靶标人蛋白酪氨酸磷酸酶 1B(h-PTP 1B),揭示了一种新型的天然 h-PTP 1B/DPP IV 双重抑制剂。

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