Thiol Redox Proteomics for Identifying Redox-Sensitive Cysteine Residues Within the Protein of Interest During Stress

Vogelsang L, Eirich J, Finkemeier I, Dietz K-J (2024)
Methods in Molecular Biology 2832.

Zeitschriftenaufsatz | Veröffentlicht | Englisch
 
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Autor*in
Vogelsang, LaraUniBi; Eirich, Jürgen; Finkemeier, Iris; Dietz, Karl-JosefUniBi
Abstract / Bemerkung
Redox modulation is a common posttranslational modification to regulate protein activity. The targets of oxidizing agents are cysteine residues(Cys), which have to be exposed at the surface of the proteins and are characterized by an environment that favors redox modulation. This includes their protonation state and the neighboring amino acids. The Cys redox state can be assessed experimentally by redox titrations to determine the midpoint redox potential in the protein. Exposed cysteine residues and putative intramolecular disulfide bonds can be predicted by alignments with structural data using dedicated software tools and information on conserved cysteine residues. Labeling with light and heavy reagents, such as N-ethylmaleimide (NEM), followed by mass spectrometric analysis, allows for the experimental determination of redox-responsive cysteine residues. This type of thiol redox proteomics is a powerful approach to assessing the redox state of the cell, e.g., in dependence on environmental conditions and, in particular, under abiotic stress. © 2024. The Author(s), under exclusive license to Springer Science+Business Media, LLC, part of Springer Nature.
Erscheinungsjahr
2024
Zeitschriftentitel
Methods in Molecular Biology
Band
2832
eISSN
1940-6029
Page URI
https://pub.uni-bielefeld.de/record/2990915

Zitieren

Vogelsang L, Eirich J, Finkemeier I, Dietz K-J. Thiol Redox Proteomics for Identifying Redox-Sensitive Cysteine Residues Within the Protein of Interest During Stress. Methods in Molecular Biology . 2024;2832.
Vogelsang, L., Eirich, J., Finkemeier, I., & Dietz, K. - J. (2024). Thiol Redox Proteomics for Identifying Redox-Sensitive Cysteine Residues Within the Protein of Interest During Stress. Methods in Molecular Biology , 2832. https://doi.org/10.1007/978-1-0716-3973-3_7
Vogelsang, Lara, Eirich, Jürgen, Finkemeier, Iris, and Dietz, Karl-Josef. 2024. “Thiol Redox Proteomics for Identifying Redox-Sensitive Cysteine Residues Within the Protein of Interest During Stress”. Methods in Molecular Biology 2832.
Vogelsang, L., Eirich, J., Finkemeier, I., and Dietz, K. - J. (2024). Thiol Redox Proteomics for Identifying Redox-Sensitive Cysteine Residues Within the Protein of Interest During Stress. Methods in Molecular Biology 2832.
Vogelsang, L., et al., 2024. Thiol Redox Proteomics for Identifying Redox-Sensitive Cysteine Residues Within the Protein of Interest During Stress. Methods in Molecular Biology , 2832.
L. Vogelsang, et al., “Thiol Redox Proteomics for Identifying Redox-Sensitive Cysteine Residues Within the Protein of Interest During Stress”, Methods in Molecular Biology , vol. 2832, 2024.
Vogelsang, L., Eirich, J., Finkemeier, I., Dietz, K.-J.: Thiol Redox Proteomics for Identifying Redox-Sensitive Cysteine Residues Within the Protein of Interest During Stress. Methods in Molecular Biology . 2832, (2024).
Vogelsang, Lara, Eirich, Jürgen, Finkemeier, Iris, and Dietz, Karl-Josef. “Thiol Redox Proteomics for Identifying Redox-Sensitive Cysteine Residues Within the Protein of Interest During Stress”. Methods in Molecular Biology 2832 (2024).
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