Construction of a QSAR Model Based on Flavonoids and Screening of Natural Pancreatic Lipase Inhibitors

Author:

Yuan Yutong12,Pan Fei3ORCID,Zhu Zehui1,Yang Zichen1,Wang Ou4,Li Qing1,Zhao Liang1ORCID,Zhao Lei1

Affiliation:

1. Beijing Engineering and Technology Research Center of Food Additives, School of Food and Health, Beijing Technology and Business University, Beijing 100048, China

2. Beijing Key Laboratory of Functional Food from Plant Resources, College of Food Science and Nutritional Engineering, China Agricultural University, Beijing 100083, China

3. Institute of Apicultural Research, Chinese Academy of Agricultural Sciences, Beijing 100093, China

4. National Institute for Nutrition and Health, Chinese Center for Disease Control and Prevention, Beijing 100050, China

Abstract

Pancreatic lipase (PL) is a key hydrolase in lipid metabolism. Inhibition of PL activity can intervene in obesity, a global sub-health disease. The natural product is considered a good alternative to chemically synthesized drugs due to its advantages, such as low side effects. However, traditional experimental screening methods are labor-intensive and cost-consuming, and there is an urgent need to develop high-throughput screening methods for the discovery of anti-PL natural products. In this study, a high-throughput virtual screening process for anti-PL natural products is provided. Firstly, a predictable anti-PL natural product QSAR model (R2train = 0.9444, R2test = 0.8962) were developed using the artificial intelligence drug design software MolAIcal based on genetic algorithms and their conformational relationships. 1068 highly similar (FS > 0.8) natural products were rapidly enriched based on the structure-activity similarity principle, combined with the QSAR model and the ADMET model, for rapid prediction of a total of five potentially efficient anti-PL natural products (IC50pre < 2 μM). Subsequently, molecular docking, molecular dynamics simulation, and MMGBSA free energy calculation were performed to not only reveal the interaction of candidate novel natural products with the amino acid residues of PL but also to validate the stability of these novel natural compounds bound to PL. In conclusion, this study greatly simplifies the screening and discovery of anti-PL natural products and accelerates the development of novel anti-obesity functional foods.

Funder

the Cultivation Project of Double First-Class Disciplines of Food Science and Engineering, Beijing Technology and Business University

Discipline Construction-Food Science and Engineering

Opening Project of Key Laboratory of Trace Element and Nutrition, National Health Commission of the People’s Republic of China

Research Foundation for Youth Scholars of Beijing Technology and Business University

Publisher

MDPI AG

Subject

Food Science,Nutrition and Dietetics

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