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Assaying Protein Kinase Activity with Radiolabeled ATP
Published on: May 26, 2017
Targeted mass spectrometry-based assays enable multiplex quantification of receptor tyrosine kinase, MAP Kinase, and
Jeffrey R Whiteaker1, Kanika Sharma2, Melissa A Hoffman3
1Clinical Research Division, Fred Hutchinson Cancer Research Center, Seattle, WA 98109, USA.
Summary:
A primary goal of the US National Cancer Institute's Ras initiative at the Frederick National Laboratory for Cancer Research is to develop methods to quantify RAS signaling to facilitate development of novel cancer therapeutics. We use targeted proteomics technologies to develop a community resource consisting of 256 validated multiple reaction monitoring (MRM)-based, multiplexed assays for quantifying protein expression and phosphorylation through the receptor tyrosine kinase, MAPK, and AKT signaling networks. As proof of concept, we quantify the response of melanoma (A375 and SK-MEL-2) and colorectal cancer (HCT-116 and HT-29) cell lines to BRAF inhibition by PLX-4720. These assays replace over 60 Western blots with quantitative mass spectrometry-based assays of high molecular specificity and quantitative precision, showing the value of these methods for pharmacodynamic measurements and mechanism of action studies. Methods, fit-for-purpose validation, and results are publicly available as a resource for the community at assays.cancer.gov.
Motivation:
A lack of quantitative, multiplexable assays for phosphosignaling limits comprehensive investigation of aberrant signaling in cancer and evaluation of novel treatments. To alleviate this limitation, we sought to develop assays using targeted mass spectrometry for quantifying protein expression and phosphorylation through the receptor tyrosine kinase, MAPK, and AKT signaling networks. The resulting assays provide a resource for replacing over 60 Western blots in examining cancer signaling and tumor biology with high molecular specificity and quantitative rigor.
Insights
Researchers developed 256 quantitative assays to measure RAS signaling proteins and their phosphorylation. These targeted proteomics methods improve cancer research by replacing traditional Western blots for precise signaling analysis.
Area of Science:
- Proteomics
- Cancer Biology
- Signaling Networks
Background:
- Quantitative assays for phosphosignaling are limited, hindering cancer research and treatment evaluation.
- Aberrant signaling pathways, including receptor tyrosine kinase, MAPK, and AKT, are crucial in cancer development.
Purpose of the Study:
- To develop a community resource of 256 validated multiplexed assays for quantifying protein expression and phosphorylation.
- To enable precise measurement of signaling pathways involved in cancer.
Main Methods:
- Utilized targeted proteomics and multiple reaction monitoring (MRM)-based assays.
- Developed assays for receptor tyrosine kinase, MAPK, and AKT signaling networks.
- Validated assays for quantifying protein expression and phosphorylation.
Main Results:
- Created a resource of 256 validated MRM-based assays.
- Quantified cellular responses in melanoma and colorectal cancer cell lines to BRAF inhibition.
- Demonstrated replacement of over 60 Western blots with mass spectrometry-based assays.
Conclusions:
- Developed a valuable resource for quantitative analysis of cancer signaling pathways.
- These assays offer high molecular specificity and quantitative precision for pharmacodynamic and mechanism of action studies.
- Publicly available methods and results facilitate community use in cancer research.
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