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Extending the Limits of Quantitative Proteome Profiling with Data-Independent Acquisition and Application to Acetaminophen-Treated Three-Dimensional Liver Microtissues

The data-independent acquisition (DIA) approach has recently been introduced as a novel mass spectrometric method that promises to combine the high content aspect of shotgun proteomics with the reproducibility and precision of selected reaction monitoring. Here, we evaluate, whether SWATH-MS type DI...

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Autores principales: Bruderer, Roland, Bernhardt, Oliver M., Gandhi, Tejas, Miladinović, Saša M., Cheng, Lin-Yang, Messner, Simon, Ehrenberger, Tobias, Zanotelli, Vito, Butscheid, Yulia, Escher, Claudia, Vitek, Olga, Rinner, Oliver, Reiter, Lukas
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The American Society for Biochemistry and Molecular Biology 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4424408/
https://www.ncbi.nlm.nih.gov/pubmed/25724911
http://dx.doi.org/10.1074/mcp.M114.044305
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author Bruderer, Roland
Bernhardt, Oliver M.
Gandhi, Tejas
Miladinović, Saša M.
Cheng, Lin-Yang
Messner, Simon
Ehrenberger, Tobias
Zanotelli, Vito
Butscheid, Yulia
Escher, Claudia
Vitek, Olga
Rinner, Oliver
Reiter, Lukas
author_facet Bruderer, Roland
Bernhardt, Oliver M.
Gandhi, Tejas
Miladinović, Saša M.
Cheng, Lin-Yang
Messner, Simon
Ehrenberger, Tobias
Zanotelli, Vito
Butscheid, Yulia
Escher, Claudia
Vitek, Olga
Rinner, Oliver
Reiter, Lukas
author_sort Bruderer, Roland
collection PubMed
description The data-independent acquisition (DIA) approach has recently been introduced as a novel mass spectrometric method that promises to combine the high content aspect of shotgun proteomics with the reproducibility and precision of selected reaction monitoring. Here, we evaluate, whether SWATH-MS type DIA effectively translates into a better protein profiling as compared with the established shotgun proteomics. We implemented a novel DIA method on the widely used Orbitrap platform and used retention-time-normalized (iRT) spectral libraries for targeted data extraction using Spectronaut. We call this combination hyper reaction monitoring (HRM). Using a controlled sample set, we show that HRM outperformed shotgun proteomics both in the number of consistently identified peptides across multiple measurements and quantification of differentially abundant proteins. The reproducibility of HRM in peptide detection was above 98%, resulting in quasi complete data sets compared with 49% of shotgun proteomics. Utilizing HRM, we profiled acetaminophen (APAP)-treated three-dimensional human liver microtissues. An early onset of relevant proteome changes was revealed at subtoxic doses of APAP. Further, we detected and quantified for the first time human NAPQI-protein adducts that might be relevant for the toxicity of APAP. The adducts were identified on four mitochondrial oxidative stress related proteins (GATM, PARK7, PRDX6, and VDAC2) and two other proteins (ANXA2 and FTCD). Our findings imply that DIA should be the preferred method for quantitative protein profiling.
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spelling pubmed-44244082015-05-18 Extending the Limits of Quantitative Proteome Profiling with Data-Independent Acquisition and Application to Acetaminophen-Treated Three-Dimensional Liver Microtissues Bruderer, Roland Bernhardt, Oliver M. Gandhi, Tejas Miladinović, Saša M. Cheng, Lin-Yang Messner, Simon Ehrenberger, Tobias Zanotelli, Vito Butscheid, Yulia Escher, Claudia Vitek, Olga Rinner, Oliver Reiter, Lukas Mol Cell Proteomics Research The data-independent acquisition (DIA) approach has recently been introduced as a novel mass spectrometric method that promises to combine the high content aspect of shotgun proteomics with the reproducibility and precision of selected reaction monitoring. Here, we evaluate, whether SWATH-MS type DIA effectively translates into a better protein profiling as compared with the established shotgun proteomics. We implemented a novel DIA method on the widely used Orbitrap platform and used retention-time-normalized (iRT) spectral libraries for targeted data extraction using Spectronaut. We call this combination hyper reaction monitoring (HRM). Using a controlled sample set, we show that HRM outperformed shotgun proteomics both in the number of consistently identified peptides across multiple measurements and quantification of differentially abundant proteins. The reproducibility of HRM in peptide detection was above 98%, resulting in quasi complete data sets compared with 49% of shotgun proteomics. Utilizing HRM, we profiled acetaminophen (APAP)-treated three-dimensional human liver microtissues. An early onset of relevant proteome changes was revealed at subtoxic doses of APAP. Further, we detected and quantified for the first time human NAPQI-protein adducts that might be relevant for the toxicity of APAP. The adducts were identified on four mitochondrial oxidative stress related proteins (GATM, PARK7, PRDX6, and VDAC2) and two other proteins (ANXA2 and FTCD). Our findings imply that DIA should be the preferred method for quantitative protein profiling. The American Society for Biochemistry and Molecular Biology 2015-05 2015-02-27 /pmc/articles/PMC4424408/ /pubmed/25724911 http://dx.doi.org/10.1074/mcp.M114.044305 Text en © 2015 by The American Society for Biochemistry and Molecular Biology, Inc. Author's Choice—Final version free via Creative Commons CC-BY license (http://creativecommons.org/licenses/by/3.0) .
spellingShingle Research
Bruderer, Roland
Bernhardt, Oliver M.
Gandhi, Tejas
Miladinović, Saša M.
Cheng, Lin-Yang
Messner, Simon
Ehrenberger, Tobias
Zanotelli, Vito
Butscheid, Yulia
Escher, Claudia
Vitek, Olga
Rinner, Oliver
Reiter, Lukas
Extending the Limits of Quantitative Proteome Profiling with Data-Independent Acquisition and Application to Acetaminophen-Treated Three-Dimensional Liver Microtissues
title Extending the Limits of Quantitative Proteome Profiling with Data-Independent Acquisition and Application to Acetaminophen-Treated Three-Dimensional Liver Microtissues
title_full Extending the Limits of Quantitative Proteome Profiling with Data-Independent Acquisition and Application to Acetaminophen-Treated Three-Dimensional Liver Microtissues
title_fullStr Extending the Limits of Quantitative Proteome Profiling with Data-Independent Acquisition and Application to Acetaminophen-Treated Three-Dimensional Liver Microtissues
title_full_unstemmed Extending the Limits of Quantitative Proteome Profiling with Data-Independent Acquisition and Application to Acetaminophen-Treated Three-Dimensional Liver Microtissues
title_short Extending the Limits of Quantitative Proteome Profiling with Data-Independent Acquisition and Application to Acetaminophen-Treated Three-Dimensional Liver Microtissues
title_sort extending the limits of quantitative proteome profiling with data-independent acquisition and application to acetaminophen-treated three-dimensional liver microtissues
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4424408/
https://www.ncbi.nlm.nih.gov/pubmed/25724911
http://dx.doi.org/10.1074/mcp.M114.044305
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