Design and Synthesis of Michael Acceptor‐Based Peptidyl β‐Nitrostyrenes as 3CLpro Inhibitors of SARS‐CoV‐2

Author:

Sharma Sweta1,Yakkala Prasanna Anjaneyulu2,Aboti Jyoti1,Latief Insha1,Ansari Mairaj Ahmed3,Khan Wajihul Hasan45,Shafi Syed1

Affiliation:

1. Department of Chemistry School of Chemical and Life Science Jamia Hamdard, Hamdard Nagar New Delhi India 110062.

2. Department of Pharmaceutical Chemistry School of Pharmaceutical Education and Research Jamia Hamdard, Hamdard Nagar New Delhi India 110062

3. Department of Biotechnology Host-Pathogen Interaction and Molecular Immunology Laboratory School of Chemical and Life Science Jamia Hamdard, Hamdard Nagar New Delhi India 110062

4. Department of Microbiology All India Institute of Medical Sciences Delhi New Delhi India 110029.

5. Department of Chemical Engineering Indian Institute of Technology-Delhi New Delhi India 110016.

Abstract

AbstractSevere Acute Respiratory Syndrome coronavirus 2 main protease was found to be one of the most attractive anti‐viral targets for the development of new chemical entities to combat coronavirus and Michael acceptors were found to be appropriate 3‐chymotrypsin‐like protease inhibitors of Severe Acute Respiratory Syndrome coronavirus 2. In this regard, a series of Michael acceptor‐based peptidyl β‐nitrostyrenes were synthesized and evaluated for their Severe Acute Respiratory Syndrome coronavirus 2 3‐chymotrypsin‐like protease inhibitory potentials using a 3‐chymotrypsin‐like protease of Severe Acute Respiratory Syndrome coronavirus 2 assay kit. Among the compounds evaluated, (E)‐N‐(2‐morpholino‐2‐oxo‐1‐phenylethyl)‐2‐(4‐(2‐nitrobut‐1‐en‐1‐yl)phenoxy)acetamide demonstrated better inhibition with an effective concentration (EC50) of 58 μM. In silico ADME predictions showed that the majority of these compounds have drug‐like properties. Furthermore, free energy calculation (ΔG Bind) and docking results demonstrate the suitable fitting of most active compound at the active site of the enzyme. Based on the in vitro and in silico studies, peptidyl β‐nitrostyrene based Michael acceptors could serve as an excellent ligand for the inhibition of 3‐chymotrypsin‐like protease of Severe Acute Respiratory Syndrome coronavirus 2 and may be used as a potential template for further development of bioactive ligands to treat CORONA VIRUS Disease of 2019.

Publisher

Wiley

Subject

General Chemistry

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