Abstract
MS1 full scan based quantification is one of the most popular approaches for large-scale proteome quantification. Typically only three different samples can be differentially labeled and quantified in a single experiment. Here we present a two stages stable isotope labeling strategy which allows six different protein samples (six-plex) to be reliably labeled and simultaneously quantified at MS1 level. Briefly in the first stage, isotope lysine-d0 (K0) and lysine-d4 (K4) are in vivo incorporated into different protein samples during cell culture. Then in the second stage, three of K0 and K4 labeled protein samples are digested by lysine C and in vitro labeled with light (2CH3), medium (2CD2 H), and heavy (213 CD3) dimethyl groups, respectively. We demonstrated that this six-plex isotope labeling strategy could successfully investigate the dynamics of protein turnover in a high throughput manner.
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CITATION STYLE
Wang, F., Cheng, K., Wei, X., Qin, H., Chen, R., Liu, J., & Zou, H. (2013). A six-plex proteome quantification strategy reveals the dynamics of protein turnover. Scientific Reports, 3. https://doi.org/10.1038/srep01827
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