Cargando…

Synthesis, Carbonic Anhydrase II/IX/XII Inhibition, DFT, and Molecular Docking Studies of Hydrazide-Sulfonamide Hybrids of 4-Methylsalicyl- and Acyl-Substituted Hydrazide

Carbonic anhydrases (CAs and EC 4.2.1.1) are the Zn(2+) containing enzymes which catalyze the reversible hydration of CO(2) to carbonate and proton. If they are not functioning properly, it would lead towards many diseases including tumor. Synthesis of hydrazide-sulfonamide hybrids (19-36) was carri...

Descripción completa

Detalles Bibliográficos
Autores principales: Khushal, Adil, Mumtaz, Amara, Shadoul, Wamda Ahmed, Zaidi, Syeda Huda Mehdi, Rafique, Hummera, Munir, Abida, Maalik, Aneela, Shah, Syed Jawad Ali, Baig, Ayesha, Khawaja, Wajiha, al-Rashida, Mariya, Hashmi, Muhammad Ali, Iqbal, Jamshed
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8894010/
https://www.ncbi.nlm.nih.gov/pubmed/35252449
http://dx.doi.org/10.1155/2022/5293349
_version_ 1784662537052094464
author Khushal, Adil
Mumtaz, Amara
Shadoul, Wamda Ahmed
Zaidi, Syeda Huda Mehdi
Rafique, Hummera
Munir, Abida
Maalik, Aneela
Shah, Syed Jawad Ali
Baig, Ayesha
Khawaja, Wajiha
al-Rashida, Mariya
Hashmi, Muhammad Ali
Iqbal, Jamshed
author_facet Khushal, Adil
Mumtaz, Amara
Shadoul, Wamda Ahmed
Zaidi, Syeda Huda Mehdi
Rafique, Hummera
Munir, Abida
Maalik, Aneela
Shah, Syed Jawad Ali
Baig, Ayesha
Khawaja, Wajiha
al-Rashida, Mariya
Hashmi, Muhammad Ali
Iqbal, Jamshed
author_sort Khushal, Adil
collection PubMed
description Carbonic anhydrases (CAs and EC 4.2.1.1) are the Zn(2+) containing enzymes which catalyze the reversible hydration of CO(2) to carbonate and proton. If they are not functioning properly, it would lead towards many diseases including tumor. Synthesis of hydrazide-sulfonamide hybrids (19-36) was carried out by the reaction of aryl (10-11) and acyl (12-13) hydrazides with substituted sulfonyl chloride (14-18). Final product formation was confirmed by FT-IR, NMR, and EI-MS. Density functional theory (DFT) calculations were performed on all the synthesized compounds to get the ground-state geometries and compute NMR properties. NMR computations were in excellent agreement with the experimental NMR data. All the synthesized hydrazide-sulfonamide hybrids were in vitro evaluated against CA II, CA IX, and CA XII isozymes for their carbonic anhydrase inhibition activities. Among the entire series, only compounds 22, 32, and 36 were highly selective inhibitors of hCA IX and did not inhibit hCA XII. To investigate the binding affinity of these compounds, molecular docking studies of compounds 32 and 36 were carried out against both hCA IX and hCA XII. By using BioSolveIT's SeeSAR software, further studies to provide visual clues to binding affinity indicate that the structural elements that are responsible for this were also studied. The binding of these compounds with hCA IX was highly favorable (as expected) and in agreement with the experimental data.
format Online
Article
Text
id pubmed-8894010
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher Hindawi
record_format MEDLINE/PubMed
spelling pubmed-88940102022-03-04 Synthesis, Carbonic Anhydrase II/IX/XII Inhibition, DFT, and Molecular Docking Studies of Hydrazide-Sulfonamide Hybrids of 4-Methylsalicyl- and Acyl-Substituted Hydrazide Khushal, Adil Mumtaz, Amara Shadoul, Wamda Ahmed Zaidi, Syeda Huda Mehdi Rafique, Hummera Munir, Abida Maalik, Aneela Shah, Syed Jawad Ali Baig, Ayesha Khawaja, Wajiha al-Rashida, Mariya Hashmi, Muhammad Ali Iqbal, Jamshed Biomed Res Int Research Article Carbonic anhydrases (CAs and EC 4.2.1.1) are the Zn(2+) containing enzymes which catalyze the reversible hydration of CO(2) to carbonate and proton. If they are not functioning properly, it would lead towards many diseases including tumor. Synthesis of hydrazide-sulfonamide hybrids (19-36) was carried out by the reaction of aryl (10-11) and acyl (12-13) hydrazides with substituted sulfonyl chloride (14-18). Final product formation was confirmed by FT-IR, NMR, and EI-MS. Density functional theory (DFT) calculations were performed on all the synthesized compounds to get the ground-state geometries and compute NMR properties. NMR computations were in excellent agreement with the experimental NMR data. All the synthesized hydrazide-sulfonamide hybrids were in vitro evaluated against CA II, CA IX, and CA XII isozymes for their carbonic anhydrase inhibition activities. Among the entire series, only compounds 22, 32, and 36 were highly selective inhibitors of hCA IX and did not inhibit hCA XII. To investigate the binding affinity of these compounds, molecular docking studies of compounds 32 and 36 were carried out against both hCA IX and hCA XII. By using BioSolveIT's SeeSAR software, further studies to provide visual clues to binding affinity indicate that the structural elements that are responsible for this were also studied. The binding of these compounds with hCA IX was highly favorable (as expected) and in agreement with the experimental data. Hindawi 2022-02-24 /pmc/articles/PMC8894010/ /pubmed/35252449 http://dx.doi.org/10.1155/2022/5293349 Text en Copyright © 2022 Adil Khushal et al. https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Khushal, Adil
Mumtaz, Amara
Shadoul, Wamda Ahmed
Zaidi, Syeda Huda Mehdi
Rafique, Hummera
Munir, Abida
Maalik, Aneela
Shah, Syed Jawad Ali
Baig, Ayesha
Khawaja, Wajiha
al-Rashida, Mariya
Hashmi, Muhammad Ali
Iqbal, Jamshed
Synthesis, Carbonic Anhydrase II/IX/XII Inhibition, DFT, and Molecular Docking Studies of Hydrazide-Sulfonamide Hybrids of 4-Methylsalicyl- and Acyl-Substituted Hydrazide
title Synthesis, Carbonic Anhydrase II/IX/XII Inhibition, DFT, and Molecular Docking Studies of Hydrazide-Sulfonamide Hybrids of 4-Methylsalicyl- and Acyl-Substituted Hydrazide
title_full Synthesis, Carbonic Anhydrase II/IX/XII Inhibition, DFT, and Molecular Docking Studies of Hydrazide-Sulfonamide Hybrids of 4-Methylsalicyl- and Acyl-Substituted Hydrazide
title_fullStr Synthesis, Carbonic Anhydrase II/IX/XII Inhibition, DFT, and Molecular Docking Studies of Hydrazide-Sulfonamide Hybrids of 4-Methylsalicyl- and Acyl-Substituted Hydrazide
title_full_unstemmed Synthesis, Carbonic Anhydrase II/IX/XII Inhibition, DFT, and Molecular Docking Studies of Hydrazide-Sulfonamide Hybrids of 4-Methylsalicyl- and Acyl-Substituted Hydrazide
title_short Synthesis, Carbonic Anhydrase II/IX/XII Inhibition, DFT, and Molecular Docking Studies of Hydrazide-Sulfonamide Hybrids of 4-Methylsalicyl- and Acyl-Substituted Hydrazide
title_sort synthesis, carbonic anhydrase ii/ix/xii inhibition, dft, and molecular docking studies of hydrazide-sulfonamide hybrids of 4-methylsalicyl- and acyl-substituted hydrazide
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8894010/
https://www.ncbi.nlm.nih.gov/pubmed/35252449
http://dx.doi.org/10.1155/2022/5293349
work_keys_str_mv AT khushaladil synthesiscarbonicanhydraseiiixxiiinhibitiondftandmoleculardockingstudiesofhydrazidesulfonamidehybridsof4methylsalicylandacylsubstitutedhydrazide
AT mumtazamara synthesiscarbonicanhydraseiiixxiiinhibitiondftandmoleculardockingstudiesofhydrazidesulfonamidehybridsof4methylsalicylandacylsubstitutedhydrazide
AT shadoulwamdaahmed synthesiscarbonicanhydraseiiixxiiinhibitiondftandmoleculardockingstudiesofhydrazidesulfonamidehybridsof4methylsalicylandacylsubstitutedhydrazide
AT zaidisyedahudamehdi synthesiscarbonicanhydraseiiixxiiinhibitiondftandmoleculardockingstudiesofhydrazidesulfonamidehybridsof4methylsalicylandacylsubstitutedhydrazide
AT rafiquehummera synthesiscarbonicanhydraseiiixxiiinhibitiondftandmoleculardockingstudiesofhydrazidesulfonamidehybridsof4methylsalicylandacylsubstitutedhydrazide
AT munirabida synthesiscarbonicanhydraseiiixxiiinhibitiondftandmoleculardockingstudiesofhydrazidesulfonamidehybridsof4methylsalicylandacylsubstitutedhydrazide
AT maalikaneela synthesiscarbonicanhydraseiiixxiiinhibitiondftandmoleculardockingstudiesofhydrazidesulfonamidehybridsof4methylsalicylandacylsubstitutedhydrazide
AT shahsyedjawadali synthesiscarbonicanhydraseiiixxiiinhibitiondftandmoleculardockingstudiesofhydrazidesulfonamidehybridsof4methylsalicylandacylsubstitutedhydrazide
AT baigayesha synthesiscarbonicanhydraseiiixxiiinhibitiondftandmoleculardockingstudiesofhydrazidesulfonamidehybridsof4methylsalicylandacylsubstitutedhydrazide
AT khawajawajiha synthesiscarbonicanhydraseiiixxiiinhibitiondftandmoleculardockingstudiesofhydrazidesulfonamidehybridsof4methylsalicylandacylsubstitutedhydrazide
AT alrashidamariya synthesiscarbonicanhydraseiiixxiiinhibitiondftandmoleculardockingstudiesofhydrazidesulfonamidehybridsof4methylsalicylandacylsubstitutedhydrazide
AT hashmimuhammadali synthesiscarbonicanhydraseiiixxiiinhibitiondftandmoleculardockingstudiesofhydrazidesulfonamidehybridsof4methylsalicylandacylsubstitutedhydrazide
AT iqbaljamshed synthesiscarbonicanhydraseiiixxiiinhibitiondftandmoleculardockingstudiesofhydrazidesulfonamidehybridsof4methylsalicylandacylsubstitutedhydrazide