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High-Throughput Assessment of Kinome-wide Activation States.

Thierry Schmidlin ,
Donna O Debets ,
Charlotte A G H van Gelder ,
Kelly E Stecker ,
Stamatia Rontogianni ,
Bart L van den Eshof ,
Kristel Kemper ,
Esther H Lips ,
Maartje van den Biggelaar ,
Daniel S Peeper ,
Albert J R Heck ,
Maarten Altelaar

Abstract

Aberrant kinase activity has been linked to a variety of disorders; however, methods to probe kinase activation states in cells have been lacking. Until now, kinase activity has mainly been deduced from either protein expression or substrate phosphorylation levels. Here, we describe a strategy to directly infer kinase activation through targeted quantification of T-loop phosphorylation, which serves as a critical activation switch in a majority of protein kinases. Combining selective phosphopeptide enrichment with robust targeted mass spectrometry, we provide highly specific assays for 248 peptides, covering 221 phosphosites in the T-loop region of 178 human kinases. Using these assays, we monitored the activation of 63 kinases through 73 T-loop phosphosites across different cell types, primary cells, and patient-derived tissue material. The sensitivity of our assays is highlighted by the reproducible detection of TNF-α-induced RIPK1 activation and the detection of 46 T-loop phosphorylation sites from a breast tumor needle biopsy.

More about this publication

Cell systems

Volume 9
Issue nr. 4
Pages 366-374.e5
Publication date 23-10-2019

Full text links

Publisher website (DOI) 10.1016/j.cels.2019.08.005
Europe PubMed Central 31521607
Pubmed 31521607

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