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Targeted Proteomic Quantitation of NRF2 Signaling and Predictive Biomarkers in HNSCC

The NFE2L2 (NRF2) oncogene and transcription factor drives a gene expression program that promotes cancer progression, metabolic reprogramming, immune evasion, and chemoradiation resistance. Patient stratification by NRF2 activity may guide treatment decisions to improve outcome. Here, we developed...

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Autores principales: Wamsley, Nathan T., Wilkerson, Emily M., Guan, Li, LaPak, Kyle M., Schrank, Travis P., Holmes, Brittany J., Sprung, Robert W., Gilmore, Petra Erdmann, Gerndt, Sophie P., Jackson, Ryan S., Paniello, Randal C., Pipkorn, Patrik, Puram, Sidharth V., Rich, Jason T., Townsend, Reid R., Zevallos, José P., Zolkind, Paul, Le, Quynh-Thu, Goldfarb, Dennis, Major, Michael B.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10587640/
https://www.ncbi.nlm.nih.gov/pubmed/37716475
http://dx.doi.org/10.1016/j.mcpro.2023.100647
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author Wamsley, Nathan T.
Wilkerson, Emily M.
Guan, Li
LaPak, Kyle M.
Schrank, Travis P.
Holmes, Brittany J.
Sprung, Robert W.
Gilmore, Petra Erdmann
Gerndt, Sophie P.
Jackson, Ryan S.
Paniello, Randal C.
Pipkorn, Patrik
Puram, Sidharth V.
Rich, Jason T.
Townsend, Reid R.
Zevallos, José P.
Zolkind, Paul
Le, Quynh-Thu
Goldfarb, Dennis
Major, Michael B.
author_facet Wamsley, Nathan T.
Wilkerson, Emily M.
Guan, Li
LaPak, Kyle M.
Schrank, Travis P.
Holmes, Brittany J.
Sprung, Robert W.
Gilmore, Petra Erdmann
Gerndt, Sophie P.
Jackson, Ryan S.
Paniello, Randal C.
Pipkorn, Patrik
Puram, Sidharth V.
Rich, Jason T.
Townsend, Reid R.
Zevallos, José P.
Zolkind, Paul
Le, Quynh-Thu
Goldfarb, Dennis
Major, Michael B.
author_sort Wamsley, Nathan T.
collection PubMed
description The NFE2L2 (NRF2) oncogene and transcription factor drives a gene expression program that promotes cancer progression, metabolic reprogramming, immune evasion, and chemoradiation resistance. Patient stratification by NRF2 activity may guide treatment decisions to improve outcome. Here, we developed a mass spectrometry–based targeted proteomics assay based on internal standard–triggered parallel reaction monitoring to quantify 69 NRF2 pathway components and targets, as well as 21 proteins of broad clinical significance in head and neck squamous cell carcinoma (HNSCC). We improved an existing internal standard–triggered parallel reaction monitoring acquisition algorithm, called SureQuant, to increase throughput, sensitivity, and precision. Testing the optimized platform on 27 lung and upper aerodigestive cancer cell models revealed 35 NRF2 responsive proteins. In formalin-fixed paraffin-embedded HNSCCs, NRF2 signaling intensity positively correlated with NRF2-activating mutations and with SOX2 protein expression. Protein markers of T-cell infiltration correlated positively with one another and with human papilloma virus infection status. CDKN2A (p16) protein expression positively correlated with the human papilloma virus oncogenic E7 protein and confirmed the presence of translationally active virus. This work establishes a clinically actionable HNSCC protein biomarker assay capable of quantifying over 600 peptides from frozen or formalin-fixed paraffin-embedded archived tissues in under 90 min.
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spelling pubmed-105876402023-10-21 Targeted Proteomic Quantitation of NRF2 Signaling and Predictive Biomarkers in HNSCC Wamsley, Nathan T. Wilkerson, Emily M. Guan, Li LaPak, Kyle M. Schrank, Travis P. Holmes, Brittany J. Sprung, Robert W. Gilmore, Petra Erdmann Gerndt, Sophie P. Jackson, Ryan S. Paniello, Randal C. Pipkorn, Patrik Puram, Sidharth V. Rich, Jason T. Townsend, Reid R. Zevallos, José P. Zolkind, Paul Le, Quynh-Thu Goldfarb, Dennis Major, Michael B. Mol Cell Proteomics Research The NFE2L2 (NRF2) oncogene and transcription factor drives a gene expression program that promotes cancer progression, metabolic reprogramming, immune evasion, and chemoradiation resistance. Patient stratification by NRF2 activity may guide treatment decisions to improve outcome. Here, we developed a mass spectrometry–based targeted proteomics assay based on internal standard–triggered parallel reaction monitoring to quantify 69 NRF2 pathway components and targets, as well as 21 proteins of broad clinical significance in head and neck squamous cell carcinoma (HNSCC). We improved an existing internal standard–triggered parallel reaction monitoring acquisition algorithm, called SureQuant, to increase throughput, sensitivity, and precision. Testing the optimized platform on 27 lung and upper aerodigestive cancer cell models revealed 35 NRF2 responsive proteins. In formalin-fixed paraffin-embedded HNSCCs, NRF2 signaling intensity positively correlated with NRF2-activating mutations and with SOX2 protein expression. Protein markers of T-cell infiltration correlated positively with one another and with human papilloma virus infection status. CDKN2A (p16) protein expression positively correlated with the human papilloma virus oncogenic E7 protein and confirmed the presence of translationally active virus. This work establishes a clinically actionable HNSCC protein biomarker assay capable of quantifying over 600 peptides from frozen or formalin-fixed paraffin-embedded archived tissues in under 90 min. American Society for Biochemistry and Molecular Biology 2023-09-15 /pmc/articles/PMC10587640/ /pubmed/37716475 http://dx.doi.org/10.1016/j.mcpro.2023.100647 Text en © 2023 The Authors https://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
Wamsley, Nathan T.
Wilkerson, Emily M.
Guan, Li
LaPak, Kyle M.
Schrank, Travis P.
Holmes, Brittany J.
Sprung, Robert W.
Gilmore, Petra Erdmann
Gerndt, Sophie P.
Jackson, Ryan S.
Paniello, Randal C.
Pipkorn, Patrik
Puram, Sidharth V.
Rich, Jason T.
Townsend, Reid R.
Zevallos, José P.
Zolkind, Paul
Le, Quynh-Thu
Goldfarb, Dennis
Major, Michael B.
Targeted Proteomic Quantitation of NRF2 Signaling and Predictive Biomarkers in HNSCC
title Targeted Proteomic Quantitation of NRF2 Signaling and Predictive Biomarkers in HNSCC
title_full Targeted Proteomic Quantitation of NRF2 Signaling and Predictive Biomarkers in HNSCC
title_fullStr Targeted Proteomic Quantitation of NRF2 Signaling and Predictive Biomarkers in HNSCC
title_full_unstemmed Targeted Proteomic Quantitation of NRF2 Signaling and Predictive Biomarkers in HNSCC
title_short Targeted Proteomic Quantitation of NRF2 Signaling and Predictive Biomarkers in HNSCC
title_sort targeted proteomic quantitation of nrf2 signaling and predictive biomarkers in hnscc
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10587640/
https://www.ncbi.nlm.nih.gov/pubmed/37716475
http://dx.doi.org/10.1016/j.mcpro.2023.100647
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