Cargando…

Identification of proteins and cellular pathways targeted by 2-nitroimidazole hypoxic cytotoxins

Tumour hypoxia negatively impacts therapy outcomes and continues to be a major unsolved clinical problem. Nitroimidazoles are hypoxia selective compounds that become entrapped in hypoxic cells by forming drug-protein adducts. They are widely used as hypoxia diagnostics and have also shown promise as...

Descripción completa

Detalles Bibliográficos
Autores principales: Rashed, Faisal Bin, Stoica, Alexandru Cezar, MacDonald, Dawn, El-Saidi, Hassan, Ricardo, Carolynne, Bhatt, Bhumi, Moore, Jack, Diaz-Dussan, Diana, Ramamonjisoa, Nirilanto, Mowery, Yvonne, Damaraju, Sambasivarao, Fahlman, Richard, Kumar, Piyush, Weinfeld, Michael
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7933538/
https://www.ncbi.nlm.nih.gov/pubmed/33640700
http://dx.doi.org/10.1016/j.redox.2021.101905
_version_ 1783660633631227904
author Rashed, Faisal Bin
Stoica, Alexandru Cezar
MacDonald, Dawn
El-Saidi, Hassan
Ricardo, Carolynne
Bhatt, Bhumi
Moore, Jack
Diaz-Dussan, Diana
Ramamonjisoa, Nirilanto
Mowery, Yvonne
Damaraju, Sambasivarao
Fahlman, Richard
Kumar, Piyush
Weinfeld, Michael
author_facet Rashed, Faisal Bin
Stoica, Alexandru Cezar
MacDonald, Dawn
El-Saidi, Hassan
Ricardo, Carolynne
Bhatt, Bhumi
Moore, Jack
Diaz-Dussan, Diana
Ramamonjisoa, Nirilanto
Mowery, Yvonne
Damaraju, Sambasivarao
Fahlman, Richard
Kumar, Piyush
Weinfeld, Michael
author_sort Rashed, Faisal Bin
collection PubMed
description Tumour hypoxia negatively impacts therapy outcomes and continues to be a major unsolved clinical problem. Nitroimidazoles are hypoxia selective compounds that become entrapped in hypoxic cells by forming drug-protein adducts. They are widely used as hypoxia diagnostics and have also shown promise as hypoxia-directed therapeutics. However, little is known about the protein targets of nitroimidazoles and the resulting effects of their modification on cancer cells. Here, we report the synthesis and applications of azidoazomycin arabinofuranoside (N(3)-AZA), a novel click-chemistry compatible 2-nitroimidazole, designed to facilitate (a) the LC-MS/MS-based proteomic analysis of 2-nitroimidazole targeted proteins in FaDu head and neck cancer cells, and (b) rapid and efficient labelling of hypoxic cells and tissues. Bioinformatic analysis revealed that many of the 62 target proteins we identified participate in key canonical pathways including glycolysis and HIF1A signaling that play critical roles in the cellular response to hypoxia. Critical cellular proteins such as the glycolytic enzyme glyceraldehyde-3-phosphate dehydrogenase (GAPDH) and the detoxification enzyme glutathione S-transferase P (GSTP1) appeared as top hits, and N(3)-AZA adduct formation significantly reduced their enzymatic activities only under hypoxia. Therefore, GAPDH, GSTP1 and other proteins reported here may represent candidate targets to further enhance the potential for nitroimidazole-based cancer therapeutics.
format Online
Article
Text
id pubmed-7933538
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher Elsevier
record_format MEDLINE/PubMed
spelling pubmed-79335382021-03-12 Identification of proteins and cellular pathways targeted by 2-nitroimidazole hypoxic cytotoxins Rashed, Faisal Bin Stoica, Alexandru Cezar MacDonald, Dawn El-Saidi, Hassan Ricardo, Carolynne Bhatt, Bhumi Moore, Jack Diaz-Dussan, Diana Ramamonjisoa, Nirilanto Mowery, Yvonne Damaraju, Sambasivarao Fahlman, Richard Kumar, Piyush Weinfeld, Michael Redox Biol Research Paper Tumour hypoxia negatively impacts therapy outcomes and continues to be a major unsolved clinical problem. Nitroimidazoles are hypoxia selective compounds that become entrapped in hypoxic cells by forming drug-protein adducts. They are widely used as hypoxia diagnostics and have also shown promise as hypoxia-directed therapeutics. However, little is known about the protein targets of nitroimidazoles and the resulting effects of their modification on cancer cells. Here, we report the synthesis and applications of azidoazomycin arabinofuranoside (N(3)-AZA), a novel click-chemistry compatible 2-nitroimidazole, designed to facilitate (a) the LC-MS/MS-based proteomic analysis of 2-nitroimidazole targeted proteins in FaDu head and neck cancer cells, and (b) rapid and efficient labelling of hypoxic cells and tissues. Bioinformatic analysis revealed that many of the 62 target proteins we identified participate in key canonical pathways including glycolysis and HIF1A signaling that play critical roles in the cellular response to hypoxia. Critical cellular proteins such as the glycolytic enzyme glyceraldehyde-3-phosphate dehydrogenase (GAPDH) and the detoxification enzyme glutathione S-transferase P (GSTP1) appeared as top hits, and N(3)-AZA adduct formation significantly reduced their enzymatic activities only under hypoxia. Therefore, GAPDH, GSTP1 and other proteins reported here may represent candidate targets to further enhance the potential for nitroimidazole-based cancer therapeutics. Elsevier 2021-02-21 /pmc/articles/PMC7933538/ /pubmed/33640700 http://dx.doi.org/10.1016/j.redox.2021.101905 Text en © 2021 The Author(s) http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Paper
Rashed, Faisal Bin
Stoica, Alexandru Cezar
MacDonald, Dawn
El-Saidi, Hassan
Ricardo, Carolynne
Bhatt, Bhumi
Moore, Jack
Diaz-Dussan, Diana
Ramamonjisoa, Nirilanto
Mowery, Yvonne
Damaraju, Sambasivarao
Fahlman, Richard
Kumar, Piyush
Weinfeld, Michael
Identification of proteins and cellular pathways targeted by 2-nitroimidazole hypoxic cytotoxins
title Identification of proteins and cellular pathways targeted by 2-nitroimidazole hypoxic cytotoxins
title_full Identification of proteins and cellular pathways targeted by 2-nitroimidazole hypoxic cytotoxins
title_fullStr Identification of proteins and cellular pathways targeted by 2-nitroimidazole hypoxic cytotoxins
title_full_unstemmed Identification of proteins and cellular pathways targeted by 2-nitroimidazole hypoxic cytotoxins
title_short Identification of proteins and cellular pathways targeted by 2-nitroimidazole hypoxic cytotoxins
title_sort identification of proteins and cellular pathways targeted by 2-nitroimidazole hypoxic cytotoxins
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7933538/
https://www.ncbi.nlm.nih.gov/pubmed/33640700
http://dx.doi.org/10.1016/j.redox.2021.101905
work_keys_str_mv AT rashedfaisalbin identificationofproteinsandcellularpathwaystargetedby2nitroimidazolehypoxiccytotoxins
AT stoicaalexandrucezar identificationofproteinsandcellularpathwaystargetedby2nitroimidazolehypoxiccytotoxins
AT macdonalddawn identificationofproteinsandcellularpathwaystargetedby2nitroimidazolehypoxiccytotoxins
AT elsaidihassan identificationofproteinsandcellularpathwaystargetedby2nitroimidazolehypoxiccytotoxins
AT ricardocarolynne identificationofproteinsandcellularpathwaystargetedby2nitroimidazolehypoxiccytotoxins
AT bhattbhumi identificationofproteinsandcellularpathwaystargetedby2nitroimidazolehypoxiccytotoxins
AT moorejack identificationofproteinsandcellularpathwaystargetedby2nitroimidazolehypoxiccytotoxins
AT diazdussandiana identificationofproteinsandcellularpathwaystargetedby2nitroimidazolehypoxiccytotoxins
AT ramamonjisoanirilanto identificationofproteinsandcellularpathwaystargetedby2nitroimidazolehypoxiccytotoxins
AT moweryyvonne identificationofproteinsandcellularpathwaystargetedby2nitroimidazolehypoxiccytotoxins
AT damarajusambasivarao identificationofproteinsandcellularpathwaystargetedby2nitroimidazolehypoxiccytotoxins
AT fahlmanrichard identificationofproteinsandcellularpathwaystargetedby2nitroimidazolehypoxiccytotoxins
AT kumarpiyush identificationofproteinsandcellularpathwaystargetedby2nitroimidazolehypoxiccytotoxins
AT weinfeldmichael identificationofproteinsandcellularpathwaystargetedby2nitroimidazolehypoxiccytotoxins