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Synthesis, Structure, Hirshfeld Surface Analysis, Non-Covalent Interaction, and In Silico Studies of 4-Hydroxy-1-[(4-Nitrophenyl)Sulfonyl]Pyrrolidine-2-Carboxyllic Acid

The new compound 4-hydroxy-1-[(4-nitrophenyl)sulfonyl]pyrrolidine-2-carboxyllic acid was obtained by the reaction of 4-hydroxyproline with 4-nitrobenzenesulfonyl chloride. The compound was characterized using single crystal X-ray diffraction studies. Spectroscopic methods including NMR, FTIR, ES-MS,...

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Autores principales: Ugwu, David Izuchukwu, Eze, Florence Uchenna, Ezeorah, Chigozie Julius, Rhyman, Lydia, Ramasami, Ponnadurai, Tania, Groutso, Eze, Cosmas Chinweike, Uzoewulu, Chiamaka Peace, Ogboo, Blessing Chinweotito, Okpareke, Obinna Chibueze
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Springer US 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9998016/
https://www.ncbi.nlm.nih.gov/pubmed/37362239
http://dx.doi.org/10.1007/s10870-023-00978-0
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author Ugwu, David Izuchukwu
Eze, Florence Uchenna
Ezeorah, Chigozie Julius
Rhyman, Lydia
Ramasami, Ponnadurai
Tania, Groutso
Eze, Cosmas Chinweike
Uzoewulu, Chiamaka Peace
Ogboo, Blessing Chinweotito
Okpareke, Obinna Chibueze
author_facet Ugwu, David Izuchukwu
Eze, Florence Uchenna
Ezeorah, Chigozie Julius
Rhyman, Lydia
Ramasami, Ponnadurai
Tania, Groutso
Eze, Cosmas Chinweike
Uzoewulu, Chiamaka Peace
Ogboo, Blessing Chinweotito
Okpareke, Obinna Chibueze
author_sort Ugwu, David Izuchukwu
collection PubMed
description The new compound 4-hydroxy-1-[(4-nitrophenyl)sulfonyl]pyrrolidine-2-carboxyllic acid was obtained by the reaction of 4-hydroxyproline with 4-nitrobenzenesulfonyl chloride. The compound was characterized using single crystal X-ray diffraction studies. Spectroscopic methods including NMR, FTIR, ES-MS, and UV were employed for further structural analysis of the synthesized compound. The title compound was found to have crystallized in an orthorhombic crystal system with space group P2(1)2(1)2(1). The S1-N1 bond length of 1.628 (2) Å was a strong indication of the formation of the title compound. The absence of characteristic downfield (1)H NMR peak of pyrrolidine ring and the presence of S–N stretching vibration at 857.82 cm(−1) on the FTIR are strong indications for the formation of the sulfonamide. The experimental study was complemented with computations at the B3LYP/6-311G +  + (d,p) level of theory to gain more understanding of interactions in the compound at the molecular level. Noncovalent interaction, Hirsfeld surface analysis and interaction energy calculations were employed in the analysis of the supramolecular architecture of the compound. Predicted ADMET parameters, awarded suitable bioavailability credentials, while the molecular docking study indicated that the compound enchants promising inhibition prospects against dihydropteroate synthase, DNA topoisomerase, and SARS-CoV-2 spike. GRAPHICAL ABSTRACT: Herein we present the solid state structure, noncovalent interaction and spectroscopic analysis of a prospective bioactive compound 4-hydroxy-1-[(4-nitrophenyl)sulphonyl]pyrrolidine-2-carboxyllic acid. [Image: see text] SUPPLEMENTARY INFORMATION: The online version contains supplementary material available at 10.1007/s10870-023-00978-0.
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spelling pubmed-99980162023-03-10 Synthesis, Structure, Hirshfeld Surface Analysis, Non-Covalent Interaction, and In Silico Studies of 4-Hydroxy-1-[(4-Nitrophenyl)Sulfonyl]Pyrrolidine-2-Carboxyllic Acid Ugwu, David Izuchukwu Eze, Florence Uchenna Ezeorah, Chigozie Julius Rhyman, Lydia Ramasami, Ponnadurai Tania, Groutso Eze, Cosmas Chinweike Uzoewulu, Chiamaka Peace Ogboo, Blessing Chinweotito Okpareke, Obinna Chibueze J Chem Crystallogr Original Paper The new compound 4-hydroxy-1-[(4-nitrophenyl)sulfonyl]pyrrolidine-2-carboxyllic acid was obtained by the reaction of 4-hydroxyproline with 4-nitrobenzenesulfonyl chloride. The compound was characterized using single crystal X-ray diffraction studies. Spectroscopic methods including NMR, FTIR, ES-MS, and UV were employed for further structural analysis of the synthesized compound. The title compound was found to have crystallized in an orthorhombic crystal system with space group P2(1)2(1)2(1). The S1-N1 bond length of 1.628 (2) Å was a strong indication of the formation of the title compound. The absence of characteristic downfield (1)H NMR peak of pyrrolidine ring and the presence of S–N stretching vibration at 857.82 cm(−1) on the FTIR are strong indications for the formation of the sulfonamide. The experimental study was complemented with computations at the B3LYP/6-311G +  + (d,p) level of theory to gain more understanding of interactions in the compound at the molecular level. Noncovalent interaction, Hirsfeld surface analysis and interaction energy calculations were employed in the analysis of the supramolecular architecture of the compound. Predicted ADMET parameters, awarded suitable bioavailability credentials, while the molecular docking study indicated that the compound enchants promising inhibition prospects against dihydropteroate synthase, DNA topoisomerase, and SARS-CoV-2 spike. GRAPHICAL ABSTRACT: Herein we present the solid state structure, noncovalent interaction and spectroscopic analysis of a prospective bioactive compound 4-hydroxy-1-[(4-nitrophenyl)sulphonyl]pyrrolidine-2-carboxyllic acid. [Image: see text] SUPPLEMENTARY INFORMATION: The online version contains supplementary material available at 10.1007/s10870-023-00978-0. Springer US 2023-03-09 /pmc/articles/PMC9998016/ /pubmed/37362239 http://dx.doi.org/10.1007/s10870-023-00978-0 Text en © The Author(s), under exclusive licence to Springer Science+Business Media, LLC, part of Springer Nature 2023, Springer Nature or its licensor (e.g. a society or other partner) holds exclusive rights to this article under a publishing agreement with the author(s) or other rightsholder(s); author self-archiving of the accepted manuscript version of this article is solely governed by the terms of such publishing agreement and applicable law. This article is made available via the PMC Open Access Subset for unrestricted research re-use and secondary analysis in any form or by any means with acknowledgement of the original source. These permissions are granted for the duration of the World Health Organization (WHO) declaration of COVID-19 as a global pandemic.
spellingShingle Original Paper
Ugwu, David Izuchukwu
Eze, Florence Uchenna
Ezeorah, Chigozie Julius
Rhyman, Lydia
Ramasami, Ponnadurai
Tania, Groutso
Eze, Cosmas Chinweike
Uzoewulu, Chiamaka Peace
Ogboo, Blessing Chinweotito
Okpareke, Obinna Chibueze
Synthesis, Structure, Hirshfeld Surface Analysis, Non-Covalent Interaction, and In Silico Studies of 4-Hydroxy-1-[(4-Nitrophenyl)Sulfonyl]Pyrrolidine-2-Carboxyllic Acid
title Synthesis, Structure, Hirshfeld Surface Analysis, Non-Covalent Interaction, and In Silico Studies of 4-Hydroxy-1-[(4-Nitrophenyl)Sulfonyl]Pyrrolidine-2-Carboxyllic Acid
title_full Synthesis, Structure, Hirshfeld Surface Analysis, Non-Covalent Interaction, and In Silico Studies of 4-Hydroxy-1-[(4-Nitrophenyl)Sulfonyl]Pyrrolidine-2-Carboxyllic Acid
title_fullStr Synthesis, Structure, Hirshfeld Surface Analysis, Non-Covalent Interaction, and In Silico Studies of 4-Hydroxy-1-[(4-Nitrophenyl)Sulfonyl]Pyrrolidine-2-Carboxyllic Acid
title_full_unstemmed Synthesis, Structure, Hirshfeld Surface Analysis, Non-Covalent Interaction, and In Silico Studies of 4-Hydroxy-1-[(4-Nitrophenyl)Sulfonyl]Pyrrolidine-2-Carboxyllic Acid
title_short Synthesis, Structure, Hirshfeld Surface Analysis, Non-Covalent Interaction, and In Silico Studies of 4-Hydroxy-1-[(4-Nitrophenyl)Sulfonyl]Pyrrolidine-2-Carboxyllic Acid
title_sort synthesis, structure, hirshfeld surface analysis, non-covalent interaction, and in silico studies of 4-hydroxy-1-[(4-nitrophenyl)sulfonyl]pyrrolidine-2-carboxyllic acid
topic Original Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9998016/
https://www.ncbi.nlm.nih.gov/pubmed/37362239
http://dx.doi.org/10.1007/s10870-023-00978-0
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