Identification of Concomitant Inhibitors against Glutamine Synthetase and Isocitrate Lyase in Mycobacterium tuberculosis from Natural Sources

Author:

Chanda Anesha1,Kalita Sanjib2,Mishra Awdhesh Kumar3,Changkakoti Liza1,Sarma Janayita Biswa4,Biswas Kunal5,Kakati Debashree6,Mohanta Yugal Kishore7ORCID,Tanti Bhaben2,Mahanta Saurov1ORCID,Saravanan Muthupandian89ORCID

Affiliation:

1. National Institute of Electronics and Information Technology, Guwahati, 781008 Assam, India

2. Department of Botany, Gauhati University, Jalukbari, Guwahati, 781014 Assam, India

3. Department of Biotechnology, Yeungnam University, Gyeongsan 38541, Republic of Korea

4. Assam Science and Technology University, Jalukbari, Guwahati, 781014 Assam, India

5. Centre for Nanoscience & Nanotechnology International Research Centre, Sathyabama Institute of Science and Technology, Jeppiaar Nagar, Rajiv Gandhi Salai, Chennai 600119, India

6. Department of Botany, Mangaldai College, Mangaldai, 784125 Assam, India

7. Department of Applied Biology, School of Biological Sciences, University of Science and Technology Meghalaya, 9th Mile, Techno city, Baridua, Ri-Bhoi, 793101 Meghalaya, India

8. Department of Microbiology, Division of Biomedical Sciences, Mekelle University, Ethiopia

9. AMR and Nanotherapeutics Laboratory, Department of Pharmacology, Saveetha Dental College, Saveetha Institute of Medical and Technical Sciences (SIMATS), Chennai 600077, India

Abstract

Tuberculosis (T.B.) is a disease that occurs due to infection by the bacterium, Mycobacterium tuberculosis (Mtb), which is responsible for millions of deaths every year. Due to the emergence of multidrug and extensive drug-resistant Mtb strains, there is an urgent need to develop more powerful drugs for inclusion in the current tuberculosis treatment regime. In this study, 1778 molecules from four medicinal plants, Azadirachta indica, Camellia sinensis, Adhatoda vasica, and Ginkgo biloba, were selected and docked against two chosen drug targets, namely, Glutamine Synthetase (G.S.) and Isocitrate Lyase (I.C.L.). Molecular Docking was performed using the Glide module of the Schrӧdinger suite to identify the best-performing ligands; the complexes formed by the best-performing ligands were further investigated for their binding stability via Molecular Dynamics Simulation of 100 ns. The present study suggests that Azadiradione from Azadirachta indica possesses the potential to inhibit Glutamine Synthetase and Isocitrate Lyase of M. tuberculosis concomitantly. The excellent docking score of the ligand and the stability of receptor-ligand complexes, coupled with the complete pharmacokinetic profile of Azadiradione, support the proposal of the small molecule, Azadiradione as a novel antitubercular agent. Further, wet lab analysis of Azadiradione may lead to the possible discovery of a novel antitubercular drug.

Publisher

Hindawi Limited

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine

Reference48 articles.

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