Published October 1, 2012
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Quantitative phosphoproteomics to characterize signaling networks
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Reversible protein phosphorylation is involved in the regulation of most, if not all, major cellular processes
via dynamic signal transduction pathways. During the last decade quantitative phosphoproteomics
have evolved from a highly specialized area to a powerful and versatile platform for analyzing protein
phosphorylation at a system-wide scale and has become the intuitive strategy for comprehensive characterization
of signaling networks. Contemporary phosphoproteomics use highly optimized procedures for
sample preparation, mass spectrometry and data analysis algorithms to identify and quantify thousands
of phosphorylations, thus providing extensive overviews of the cellular signaling networks. As a result
of these developments quantitative phosphoproteomics have been applied to study processes as diverse
as immunology, stem cell biology and DNA damage. Here we review the developments in phosphoproteomics
technology that have facilitated the application of phosphoproteomics to signaling networks
and introduce examples of recent system-wide applications of quantitative phosphoproteomics. Despite
the great advances in phosphoproteomics technology there are still several outstanding issues and we
provide here our outlook on the current limitations and challenges in the field.
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