Designs, Synthesis, Docking Studies, and Biological Evaluation of Novel Berberine Derivatives Targeting Zika Virus

Author:

Nguyen Cuong Quoc1,Nguyen Thi Hong Minh2,Nguyen Thi Thu Thuy3,Bui Thi Buu Hue1,Nguyen Trong Tuan1,Huynh Nhu Thao1,Le Thanh Do3,Nguyen Thi Mai Phuong45,Nguyen Duy Tuan6,Nguyen Minh Tam78,Pham Minh Quan49ORCID,Tran Quang De1ORCID,Nguyen Hong Phuong10ORCID

Affiliation:

1. Department of Chemistry, College of Natural Sciences, Can Tho University, Can Tho, Vietnam

2. Department of Life Science, University of Science and Technology of Ha Noi, Vietnam Academy of Science and Technology, Ha Noi, Vietnam

3. Institute for Global Health Innovations, Duy Tan University, Da Nang, Vietnam

4. Graduate University of Science and Technology, Vietnam Academy of Science and Technology, Ha Noi, Vietnam

5. Institute of Biotechnology, Vietnam Academy of Science and Technology, Ha Noi, Vietnam

6. Faculty of Medicine, Nam Can Tho University, Can Tho, Vietnam

7. Computational Chemistry Research Group, Ton Duc Thang University, Ho Chi Minh, Vietnam

8. Faculty of Applied Sciences, Ton Duc Thang University, Ho Chi Minh, Vietnam

9. Institute of Natural Products Chemistry, Vietnam Academy of Science and Technology, Ha Noi, Vietnam

10. Institute of Research and Development, Duy Tan University, Da Nang, Vietnam

Abstract

The World Health Organization has designated Zika virus (ZIKV) as a dangerous, mosquito-borne flaviviral pathogen that was recently found to be responsible for a dramatically increased number of microcephaly cases and other congenital abnormalities in fetuses and newborns. There is neither a vaccine to prevent nor a drug to treat ZIKA virus infections, at the present time. Berberine (BBR) is a promising drug approved by FDA against flaviviral dengue virus, and BBR derivatives are of great interest in antiviral drug development. In this study, we synthesized eight BBR derivatives by introducing benzyl groups at the C-13 position of BBR and converting to respective 8-oxoberberine derivatives, performed molecular docking analysis, and evaluated their anti-Zika virus activity utilizing a cell‐based phenotypic assay. Binding mode analysis, absolute binding free energy calculation, and structure-activity relationship studies of these compounds with ZIKV NS3 receptor were collected. Amongst these studied compounds, compound 4d with a structure of 13-(2,6-difluoro)-benzylberberine showed high binding affinity (docking score of −7.31 kcal/mol) towards ZIKV NS2B-NS3 protease with critical binding formed within the active site. In the cell-based assay, compound 4d displayed the highest antiviral efficacy against ZIKV with a selective index (SI) of 15.3, with 3.7-fold greater than that of berberine. Together, our study suggests that the potential ZIKV NS2B-NS3 protease inhibitor, compound 4d, is the best alternative to BBR and, further, extends an assuring platform for developing antiviral competitive inhibitors against ZIKV infection.

Funder

Ministry of Education and Training

Publisher

Hindawi Limited

Subject

General Chemistry

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