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Analysis of the Human Kinome and Phosphatome by Mass Cytometry Reveals Overexpression-Induced Effects on Cancer-Related Signaling

Kinase and phosphatase overexpression drives tumorigenesis and drug resistance. We previously developed a mass-cytometry-based single-cell proteomics approach that enables quantitative assessment of overexpression effects on cell signaling. Here, we applied this approach in a human kinome- and phosp...

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Autores principales: Lun, Xiao-Kang, Szklarczyk, Damian, Gábor, Attila, Dobberstein, Nadine, Zanotelli, Vito Riccardo Tomaso, Saez-Rodriguez, Julio, von Mering, Christian, Bodenmiller, Bernd
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cell Press 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6561723/
https://www.ncbi.nlm.nih.gov/pubmed/31101498
http://dx.doi.org/10.1016/j.molcel.2019.04.021
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author Lun, Xiao-Kang
Szklarczyk, Damian
Gábor, Attila
Dobberstein, Nadine
Zanotelli, Vito Riccardo Tomaso
Saez-Rodriguez, Julio
von Mering, Christian
Bodenmiller, Bernd
author_facet Lun, Xiao-Kang
Szklarczyk, Damian
Gábor, Attila
Dobberstein, Nadine
Zanotelli, Vito Riccardo Tomaso
Saez-Rodriguez, Julio
von Mering, Christian
Bodenmiller, Bernd
author_sort Lun, Xiao-Kang
collection PubMed
description Kinase and phosphatase overexpression drives tumorigenesis and drug resistance. We previously developed a mass-cytometry-based single-cell proteomics approach that enables quantitative assessment of overexpression effects on cell signaling. Here, we applied this approach in a human kinome- and phosphatome-wide study to assess how 649 individually overexpressed proteins modulated cancer-related signaling in HEK293T cells in an abundance-dependent manner. Based on these data, we expanded the functional classification of human kinases and phosphatases and showed that the overexpression effects include non-catalytic roles. We detected 208 previously unreported signaling relationships. The signaling dynamics analysis indicated that the overexpression of ERK-specific phosphatases sustains proliferative signaling. This suggests a phosphatase-driven mechanism of cancer progression. Moreover, our analysis revealed a drug-resistant mechanism through which overexpression of tyrosine kinases, including SRC, FES, YES1, and BLK, induced MEK-independent ERK activation in melanoma A375 cells. These proteins could predict drug sensitivity to BRAF-MEK concurrent inhibition in cells carrying BRAF mutations.
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spelling pubmed-65617232019-06-17 Analysis of the Human Kinome and Phosphatome by Mass Cytometry Reveals Overexpression-Induced Effects on Cancer-Related Signaling Lun, Xiao-Kang Szklarczyk, Damian Gábor, Attila Dobberstein, Nadine Zanotelli, Vito Riccardo Tomaso Saez-Rodriguez, Julio von Mering, Christian Bodenmiller, Bernd Mol Cell Article Kinase and phosphatase overexpression drives tumorigenesis and drug resistance. We previously developed a mass-cytometry-based single-cell proteomics approach that enables quantitative assessment of overexpression effects on cell signaling. Here, we applied this approach in a human kinome- and phosphatome-wide study to assess how 649 individually overexpressed proteins modulated cancer-related signaling in HEK293T cells in an abundance-dependent manner. Based on these data, we expanded the functional classification of human kinases and phosphatases and showed that the overexpression effects include non-catalytic roles. We detected 208 previously unreported signaling relationships. The signaling dynamics analysis indicated that the overexpression of ERK-specific phosphatases sustains proliferative signaling. This suggests a phosphatase-driven mechanism of cancer progression. Moreover, our analysis revealed a drug-resistant mechanism through which overexpression of tyrosine kinases, including SRC, FES, YES1, and BLK, induced MEK-independent ERK activation in melanoma A375 cells. These proteins could predict drug sensitivity to BRAF-MEK concurrent inhibition in cells carrying BRAF mutations. Cell Press 2019-06-06 /pmc/articles/PMC6561723/ /pubmed/31101498 http://dx.doi.org/10.1016/j.molcel.2019.04.021 Text en © 2019 The Author(s) http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Lun, Xiao-Kang
Szklarczyk, Damian
Gábor, Attila
Dobberstein, Nadine
Zanotelli, Vito Riccardo Tomaso
Saez-Rodriguez, Julio
von Mering, Christian
Bodenmiller, Bernd
Analysis of the Human Kinome and Phosphatome by Mass Cytometry Reveals Overexpression-Induced Effects on Cancer-Related Signaling
title Analysis of the Human Kinome and Phosphatome by Mass Cytometry Reveals Overexpression-Induced Effects on Cancer-Related Signaling
title_full Analysis of the Human Kinome and Phosphatome by Mass Cytometry Reveals Overexpression-Induced Effects on Cancer-Related Signaling
title_fullStr Analysis of the Human Kinome and Phosphatome by Mass Cytometry Reveals Overexpression-Induced Effects on Cancer-Related Signaling
title_full_unstemmed Analysis of the Human Kinome and Phosphatome by Mass Cytometry Reveals Overexpression-Induced Effects on Cancer-Related Signaling
title_short Analysis of the Human Kinome and Phosphatome by Mass Cytometry Reveals Overexpression-Induced Effects on Cancer-Related Signaling
title_sort analysis of the human kinome and phosphatome by mass cytometry reveals overexpression-induced effects on cancer-related signaling
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6561723/
https://www.ncbi.nlm.nih.gov/pubmed/31101498
http://dx.doi.org/10.1016/j.molcel.2019.04.021
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