Discovery and Characterization of Panaxatriol as a Novel Thrombin Inhibitor from Panax notoginseng Using a Combination of Computational and Experimental Approaches

Author:

Wang Xing1ORCID,Ma Yuqing1,Zuo Chunfang2,Zhao Zixi1,Ma Ruonan1,Wang Lele3,Fang Yuzhen3,Zhang Yuxin3,Wu Xia1

Affiliation:

1. Beijing Key Lab of Traditional Chinese Medicine Collateral Disease Theory Research, School of Traditional Chinese Medicine, Capital Medical University, Beijing, China

2. Pharmacy Department, The 989th Hospital of the Joint Logistics Support Force of the Chinese Peopleʼs Liberation Army, Luoyang, China

3. Key Laboratory of Ethnomedicine (Ministry of Education), School of Pharmacy, Minzu University of China, Beijing, China

Abstract

AbstractThrombin is a crucial enzyme in the coagulation cascade, and inhibitors of thrombin have been extensively studied as potential antithrombotic agents. The objective of this study was to identify natural inhibitors of thrombin from Panax notoginseng and evaluate their biological activity in vitro and binding characteristics. A combined approach involving molecular docking, thrombin inhibition assays, surface plasmon resonance, and molecular dynamics simulation was utilized to identify natural thrombin inhibitors. The results demonstrated that panaxatriol directly inhibits thrombin, with an IC50 of 10.3 µM. Binding studies using surface plasmon resonance revealed that panaxatriol interacts with thrombin, with a KD value of 7.8 µM. Molecular dynamics analysis indicated that the thrombin-panaxatriol system reached equilibrium rapidly with minimal fluctuations, and the calculated binding free energy was − 23.8 kcal/mol. The interaction between panaxatriol and thrombin involves the amino acid residues Glu146, Glu192, Gly216, Gly219, Tyr60A, and Trp60D. This interaction provides a mechanistic basis for further optimizing panaxatriol as a thrombin inhibitor. Our study has shown that panaxatriol serves as a direct thrombin inhibitor, laying the groundwork for further research and development of novel thrombin inhibitors.

Funder

National Natural Science Foundation of China

Publisher

Georg Thieme Verlag KG

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