Authors
Jana Zecha, Chen Meng, Daniel Paul Zolg, Patroklos Samaras, Mathias Wilhelm, Bernhard Kuster
Publication date
2018/5/1
Journal
Molecular & Cellular Proteomics
Volume
17
Issue
5
Pages
974-992
Publisher
Elsevier
Description
The coordination of protein synthesis and degradation regulating protein abundance is a fundamental process in cellular homeostasis. Today, mass spectrometry-based technologies allow determination of endogenous protein turnover on a proteome-wide scale. However, standard dynamic SILAC (Stable Isotope Labeling in Cell Culture) approaches can suffer from missing data across pulse time-points limiting the accuracy of such analysis. This issue is of particular relevance when studying protein stability at the level of proteoforms because often only single peptides distinguish between different protein products of the same gene. To address this shortcoming, we evaluated the merits of combining dynamic SILAC and tandem mass tag (TMT)-labeling of ten pulse time-points in a single experiment. Although the comparison to the standard dynamic SILAC method showed a high concordance of protein turnover …
Total citations
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Scholar articles
J Zecha, C Meng, DP Zolg, P Samaras, M Wilhelm… - Molecular & Cellular Proteomics, 2018