Inhibitory, biocompatible, and pharmacological potentiality of dammarenolic‐acid derivatives towards α‐glucosidase (3W37) and tyrosine phosphatase 1B (PTP1B)

Author:

Quy Phan Tu1,Van Hue Nguyen2,Bui Thanh Q.3,Triet Nguyen Thanh4,Van Chen Tran5,Van Long Nguyen6ORCID,Smirnova Irina7,Petrova Anatasia7,Thao Tran Thi Phuong89,Ninh Pham Thi89,Ha Nguyen Thi Thu89,Nhung Nguyen Thi Ai3

Affiliation:

1. Department of Natural Sciences & Technology, Tay Nguyen University, 567 Le Duan, Buon Ma Thuot Dak Lak 63000 Viet Nam

2. Faculty of Engineering and Food Technology, University of Agriculture and Forestry, Hue University 102 Phung Hung, Hue 53000 Viet Nam

3. Department of Chemistry University of Sciences Hue University, 77 Nguyen Hue, Hue 53000 Viet Nam

4. Faculty of Traditional Medicine, University of Medicine and Pharmacy at Ho Chi Minh City 217 Hong Bang, Ward 11, District 5 Ho Chi Minh City 70000 Viet Nam

5. Faculty of Pharmacy, University of Medicine and Pharmacy at Ho Chi Minh City, 217 Hong Bang Ward 11, District 5 Ho Chi Minh City 70000 Viet Nam

6. Faculty of Medicine and Pharmacy, Tay Nguyen University, 567 Le Duan, Buon Ma Thuot Dak Lak 63000 Viet Nam

7. Ufa Institute of Chemistry UFRC RAS, 71, pr. Oktyabrya Ufa 450054 Russia

8. Institute of Chemistry, Vietnam Academy of Science and Technology, 18 Hoang Quoc Viet, Cau Giay Hanoi 10000 Viet Nam

9. Graduate University of Science and Technology, Vietnam Academy of Science and Technology 18 Hoang Quoc Viet, Cau Giay Hanoi 10000 Viet Nam

Abstract

AbstractDammarenolic‐acid derivatives experimentally demonstrated possessing inhibition activity towards α‐glucosidase might be used as the evidence to retrieve an inhibitory mechanism and subjected for computational screening on other diabetes‐related proteins, e.g. tyrosine phosphatase 1B. Seven structures reported in our preceding work (denoted as 1‐7) were subjected for an in silico investigation in this study on inhibitability towards protein structure PDB‐3W37 by molecular docking simulation. The computer‐based results see a good agreement with those from laboratory‐based reports, with the order of static stability: 3‐3W37 > 1‐3W37 > 7‐3W37 > 2‐3W37 > 6‐3W37 ~ 5‐3W37 ~ 4‐3W37 (negligible activity). Together, experiment‐theory reveals the most promising candidates are 1‐3 and 7. The in‐theory order for most promising inhibitors regarding protein structure UniProt‐PTP1B is: 1‐PTP1B > 6‐PTP1B > 4‐PTP1B. Quantity‐structure relationship analyses (i.e. QSARIS and ADMET) expect 1‐3 as compounds with sufficient bio‐ and pharma‐compatibility. Altogether, the results specify 1 as the most promising candidate for multi‐purpose inhibition towards diabetes‐based proteins, thus encouraging elevated efforts for validation and further development for application.

Publisher

Wiley

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