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Kinomics platform using GBM tissue identifies BTK as being associated with higher patient survival

Better understanding of GBM signalling networks in-vivo would help develop more physiologically relevant ex vivo models to support therapeutic discovery. A “functional proteomics” screen was undertaken to measure the specific activity of a set of protein kinases in a two-step cell-free biochemical a...

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Autores principales: Al Shboul, Sofian, Curran, Olimpia E, Alfaro, Javier A, Lickiss, Fiona, Nita, Erisa, Kowalski, Jacek, Naji, Faris, Nenutil, Rudolf, Ball, Kathryn L, Krejcir, Radovan, Vojtesek, Borivoj, Hupp, Ted R, Brennan, Paul M
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Life Science Alliance LLC 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8548209/
https://www.ncbi.nlm.nih.gov/pubmed/34645618
http://dx.doi.org/10.26508/lsa.202101054
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author Al Shboul, Sofian
Curran, Olimpia E
Alfaro, Javier A
Lickiss, Fiona
Nita, Erisa
Kowalski, Jacek
Naji, Faris
Nenutil, Rudolf
Ball, Kathryn L
Krejcir, Radovan
Vojtesek, Borivoj
Hupp, Ted R
Brennan, Paul M
author_facet Al Shboul, Sofian
Curran, Olimpia E
Alfaro, Javier A
Lickiss, Fiona
Nita, Erisa
Kowalski, Jacek
Naji, Faris
Nenutil, Rudolf
Ball, Kathryn L
Krejcir, Radovan
Vojtesek, Borivoj
Hupp, Ted R
Brennan, Paul M
author_sort Al Shboul, Sofian
collection PubMed
description Better understanding of GBM signalling networks in-vivo would help develop more physiologically relevant ex vivo models to support therapeutic discovery. A “functional proteomics” screen was undertaken to measure the specific activity of a set of protein kinases in a two-step cell-free biochemical assay to define dominant kinase activities to identify potentially novel drug targets that may have been overlooked in studies interrogating GBM-derived cell lines. A dominant kinase activity derived from the tumour tissue, but not patient-derived GBM stem-like cell lines, was Bruton tyrosine kinase (BTK). We demonstrate that BTK is expressed in more than one cell type within GBM tissue; SOX2-positive cells, CD163-positive cells, CD68-positive cells, and an unidentified cell population which is SOX2-negative CD163-negative and/or CD68-negative. The data provide a strategy to better mimic GBM tissue ex vivo by reconstituting more physiologically heterogeneous cell co-culture models including BTK-positive/negative cancer and immune cells. These data also have implications for the design and/or interpretation of emerging clinical trials using BTK inhibitors because BTK expression within GBM tissue was linked to longer patient survival.
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spelling pubmed-85482092021-11-05 Kinomics platform using GBM tissue identifies BTK as being associated with higher patient survival Al Shboul, Sofian Curran, Olimpia E Alfaro, Javier A Lickiss, Fiona Nita, Erisa Kowalski, Jacek Naji, Faris Nenutil, Rudolf Ball, Kathryn L Krejcir, Radovan Vojtesek, Borivoj Hupp, Ted R Brennan, Paul M Life Sci Alliance Research Articles Better understanding of GBM signalling networks in-vivo would help develop more physiologically relevant ex vivo models to support therapeutic discovery. A “functional proteomics” screen was undertaken to measure the specific activity of a set of protein kinases in a two-step cell-free biochemical assay to define dominant kinase activities to identify potentially novel drug targets that may have been overlooked in studies interrogating GBM-derived cell lines. A dominant kinase activity derived from the tumour tissue, but not patient-derived GBM stem-like cell lines, was Bruton tyrosine kinase (BTK). We demonstrate that BTK is expressed in more than one cell type within GBM tissue; SOX2-positive cells, CD163-positive cells, CD68-positive cells, and an unidentified cell population which is SOX2-negative CD163-negative and/or CD68-negative. The data provide a strategy to better mimic GBM tissue ex vivo by reconstituting more physiologically heterogeneous cell co-culture models including BTK-positive/negative cancer and immune cells. These data also have implications for the design and/or interpretation of emerging clinical trials using BTK inhibitors because BTK expression within GBM tissue was linked to longer patient survival. Life Science Alliance LLC 2021-10-13 /pmc/articles/PMC8548209/ /pubmed/34645618 http://dx.doi.org/10.26508/lsa.202101054 Text en © 2021 Al Shboul et al. https://creativecommons.org/licenses/by/4.0/This article is available under a Creative Commons License (Attribution 4.0 International, as described at https://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Articles
Al Shboul, Sofian
Curran, Olimpia E
Alfaro, Javier A
Lickiss, Fiona
Nita, Erisa
Kowalski, Jacek
Naji, Faris
Nenutil, Rudolf
Ball, Kathryn L
Krejcir, Radovan
Vojtesek, Borivoj
Hupp, Ted R
Brennan, Paul M
Kinomics platform using GBM tissue identifies BTK as being associated with higher patient survival
title Kinomics platform using GBM tissue identifies BTK as being associated with higher patient survival
title_full Kinomics platform using GBM tissue identifies BTK as being associated with higher patient survival
title_fullStr Kinomics platform using GBM tissue identifies BTK as being associated with higher patient survival
title_full_unstemmed Kinomics platform using GBM tissue identifies BTK as being associated with higher patient survival
title_short Kinomics platform using GBM tissue identifies BTK as being associated with higher patient survival
title_sort kinomics platform using gbm tissue identifies btk as being associated with higher patient survival
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8548209/
https://www.ncbi.nlm.nih.gov/pubmed/34645618
http://dx.doi.org/10.26508/lsa.202101054
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