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Quantification of cellular protein and redox imbalance using SILAC-iodoTMT methodology

Under normal conditions, the cellular redox status is maintained in a steady state by reduction and oxidation processes. These redox alterations in the cell are mainly sensed by protein thiol residues of cysteines thus regulating protein function. The imbalance in redox homeostasis may therefore reg...

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Autores principales: Vajrychova, Marie, Salovska, Barbora, Pimkova, Kristyna, Fabrik, Ivo, Tambor, Vojtech, Kondelova, Alexandra, Bartek, Jiri, Hodny, Zdenek
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6545335/
https://www.ncbi.nlm.nih.gov/pubmed/31154163
http://dx.doi.org/10.1016/j.redox.2019.101227
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author Vajrychova, Marie
Salovska, Barbora
Pimkova, Kristyna
Fabrik, Ivo
Tambor, Vojtech
Kondelova, Alexandra
Bartek, Jiri
Hodny, Zdenek
author_facet Vajrychova, Marie
Salovska, Barbora
Pimkova, Kristyna
Fabrik, Ivo
Tambor, Vojtech
Kondelova, Alexandra
Bartek, Jiri
Hodny, Zdenek
author_sort Vajrychova, Marie
collection PubMed
description Under normal conditions, the cellular redox status is maintained in a steady state by reduction and oxidation processes. These redox alterations in the cell are mainly sensed by protein thiol residues of cysteines thus regulating protein function. The imbalance in redox homeostasis may therefore regulate protein turnover either directly by redox modulating of transcription factors or indirectly by the degradation of damaged proteins due to oxidation. A new analytical method capable of simultaneously assessing cellular protein expression and cysteine oxidation would provide a valuable tool for the field of cysteine-targeted biology. Here, we show a workflow based on protein quantification using metabolic labeling and determination of cysteine oxidation using reporter ion quantification. We applied this approach to determine protein and redox changes in cells after 5-min, 60-min and 32-h exposure to H(2)O(2), respectively. Based on the functional analysis of our data, we confirmed a biological relevance of this approach and its applicability for parallel mapping of cellular proteomes and redoxomes under diverse conditions. In addition, we revealed a specific pattern of redox changes in peroxiredoxins in a short time-interval cell exposure to H(2)O(2). Overall, our present study offers an innovative, versatile experimental approach to the multifaceted assessment of cellular proteome and its redox status, with broad implications for biomedical research towards a better understanding of organismal physiology and diverse disease conditions.
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spelling pubmed-65453352019-06-06 Quantification of cellular protein and redox imbalance using SILAC-iodoTMT methodology Vajrychova, Marie Salovska, Barbora Pimkova, Kristyna Fabrik, Ivo Tambor, Vojtech Kondelova, Alexandra Bartek, Jiri Hodny, Zdenek Redox Biol Short Communication Under normal conditions, the cellular redox status is maintained in a steady state by reduction and oxidation processes. These redox alterations in the cell are mainly sensed by protein thiol residues of cysteines thus regulating protein function. The imbalance in redox homeostasis may therefore regulate protein turnover either directly by redox modulating of transcription factors or indirectly by the degradation of damaged proteins due to oxidation. A new analytical method capable of simultaneously assessing cellular protein expression and cysteine oxidation would provide a valuable tool for the field of cysteine-targeted biology. Here, we show a workflow based on protein quantification using metabolic labeling and determination of cysteine oxidation using reporter ion quantification. We applied this approach to determine protein and redox changes in cells after 5-min, 60-min and 32-h exposure to H(2)O(2), respectively. Based on the functional analysis of our data, we confirmed a biological relevance of this approach and its applicability for parallel mapping of cellular proteomes and redoxomes under diverse conditions. In addition, we revealed a specific pattern of redox changes in peroxiredoxins in a short time-interval cell exposure to H(2)O(2). Overall, our present study offers an innovative, versatile experimental approach to the multifaceted assessment of cellular proteome and its redox status, with broad implications for biomedical research towards a better understanding of organismal physiology and diverse disease conditions. Elsevier 2019-05-21 /pmc/articles/PMC6545335/ /pubmed/31154163 http://dx.doi.org/10.1016/j.redox.2019.101227 Text en © 2019 Published by Elsevier B.V. http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Short Communication
Vajrychova, Marie
Salovska, Barbora
Pimkova, Kristyna
Fabrik, Ivo
Tambor, Vojtech
Kondelova, Alexandra
Bartek, Jiri
Hodny, Zdenek
Quantification of cellular protein and redox imbalance using SILAC-iodoTMT methodology
title Quantification of cellular protein and redox imbalance using SILAC-iodoTMT methodology
title_full Quantification of cellular protein and redox imbalance using SILAC-iodoTMT methodology
title_fullStr Quantification of cellular protein and redox imbalance using SILAC-iodoTMT methodology
title_full_unstemmed Quantification of cellular protein and redox imbalance using SILAC-iodoTMT methodology
title_short Quantification of cellular protein and redox imbalance using SILAC-iodoTMT methodology
title_sort quantification of cellular protein and redox imbalance using silac-iodotmt methodology
topic Short Communication
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6545335/
https://www.ncbi.nlm.nih.gov/pubmed/31154163
http://dx.doi.org/10.1016/j.redox.2019.101227
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