Synthesis, Crystal Structure, DFT Calculations, Hirshfeld Surface Analysis and In Silico Drug-Target Profiling of (R)-2-(2-(1,3-Dioxoisoindolin-2-yl)propanamido)benzoic Acid Methyl Ester

Author:

Rubab Syeda Laila1,Raza Abdul Rauf2ORCID,Nisar Bushra3,Ashfaq Muhammad4ORCID,Altaf Yasir15,Hussain Riaz1,Sajjad Noreen6,Akram Muhammad Safwan7ORCID,Tahir Muhammad Nawaz4,Shaheen Muhammad Ashraf2,Rehman Muhammad Fayyaz ur2,Ali Hayssam M.8ORCID

Affiliation:

1. Department of Chemistry, Division of Science and Technology, University of Education, Lahore 54770, Pakistan

2. Institute of Chemistry, Ibn e Sena Block, University of Sargodha, Sargodha 40100, Pakistan

3. Department of Chemistry, The University of Lahore, Sargodha Campus, Sargodha 40100, Pakistan

4. Department of Physics, University of Sargodha, Sargodha 40100, Pakistan

5. School of Chemical and Physical Sciences, Victoria University of Wellington, Wellington 6140, New Zealand

6. Department of Chemistry, The University of Lahore, Lahore 54770, Pakistan

7. School of Health and Life Sciences, Teesside University, Middlesbrough TS1 3BA, UK

8. Department of Botany and Microbiology, College of Science, King Saud University, Riyadh 11451, Saudi Arabia

Abstract

The work here reflects synthesis, DFT studies, Hirshfeld charge analysis and crystal data exploration of pharmacologically important (R)-2-(2-(1,3-dioxoisoindolin-2-yl)propanamido)benzoic acid methyl ester (5) to understand its properties for further chemical transformations. The methyl anthranilate (2) was produced by the esterification of anthranilic acid in an acidic medium. The phthaloyl-protected alanine (4) was rendered by the fusion of alanine with phthalic anhydride at 150 °C, followed by coupling with (2) furnished isoindole (5). The characterization of products was performed using IR, UV-Vis, NMR and MS. Single-crystal XRD also verified the structure of (5) in which N-H⋯O bonding stabilizes the molecular configuration of (5), resulting in the formation of S(6) hydrogen-bonded loop. The molecules of isoindole (5) are connected in the form of dimers, and the π⋯π stacking interaction between aromatic rings further stabilizes the crystal packing. DFT studies suggest that HOMO is over the substituted aromatic ring, the LUMO is present mainly over the indole side, and nucleophilic and electrophilic corners point out the reactivity of the product (5). In vitro and in silico analysis of (5) shows its potential as an antibacterial agent targeting DNA gyrase and Dihydroorotase from E. coli and tyrosyl-tRNA synthetase and DNA gyrase from Staphylococcus aureus.

Funder

King Saud University, Riyadh, Saudi Arabia

Publisher

MDPI AG

Subject

Chemistry (miscellaneous),Analytical Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Molecular Medicine,Drug Discovery,Pharmaceutical Science

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