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Upregulation of GALNT7 in prostate cancer modifies O-glycosylation and promotes tumour growth

Prostate cancer is the most common cancer in men and it is estimated that over 350,000 men worldwide die of prostate cancer every year. There remains an unmet clinical need to improve how clinically significant prostate cancer is diagnosed and develop new treatments for advanced disease. Aberrant gl...

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Autores principales: Scott, Emma, Hodgson, Kirsty, Calle, Beatriz, Turner, Helen, Cheung, Kathleen, Bermudez, Abel, Marques, Fernando Jose Garcia, Pye, Hayley, Yo, Edward Christopher, Islam, Khirul, Oo, Htoo Zarni, McClurg, Urszula L., Wilson, Laura, Thomas, Huw, Frame, Fiona M., Orozco-Moreno, Margarita, Bastian, Kayla, Arredondo, Hector M., Roustan, Chloe, Gray, Melissa Anne, Kelly, Lois, Tolson, Aaron, Mellor, Ellie, Hysenaj, Gerald, Goode, Emily Archer, Garnham, Rebecca, Duxfield, Adam, Heavey, Susan, Stopka-Farooqui, Urszula, Haider, Aiman, Freeman, Alex, Singh, Saurabh, Johnston, Edward W., Punwani, Shonit, Knight, Bridget, McCullagh, Paul, McGrath, John, Crundwell, Malcolm, Harries, Lorna, Bogdan, Denisa, Westaby, Daniel, Fowler, Gemma, Flohr, Penny, Yuan, Wei, Sharp, Adam, de Bono, Johann, Maitland, Norman J., Wisnovsky, Simon, Bertozzi, Carolyn R., Heer, Rakesh, Guerrero, Ramon Hurtado, Daugaard, Mads, Leivo, Janne, Whitaker, Hayley, Pitteri, Sharon, Wang, Ning, Elliott, David J., Schumann, Benjamin, Munkley, Jennifer
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10020086/
https://www.ncbi.nlm.nih.gov/pubmed/36725887
http://dx.doi.org/10.1038/s41388-023-02604-x
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author Scott, Emma
Hodgson, Kirsty
Calle, Beatriz
Turner, Helen
Cheung, Kathleen
Bermudez, Abel
Marques, Fernando Jose Garcia
Pye, Hayley
Yo, Edward Christopher
Islam, Khirul
Oo, Htoo Zarni
McClurg, Urszula L.
Wilson, Laura
Thomas, Huw
Frame, Fiona M.
Orozco-Moreno, Margarita
Bastian, Kayla
Arredondo, Hector M.
Roustan, Chloe
Gray, Melissa Anne
Kelly, Lois
Tolson, Aaron
Mellor, Ellie
Hysenaj, Gerald
Goode, Emily Archer
Garnham, Rebecca
Duxfield, Adam
Heavey, Susan
Stopka-Farooqui, Urszula
Haider, Aiman
Freeman, Alex
Singh, Saurabh
Johnston, Edward W.
Punwani, Shonit
Knight, Bridget
McCullagh, Paul
McGrath, John
Crundwell, Malcolm
Harries, Lorna
Bogdan, Denisa
Westaby, Daniel
Fowler, Gemma
Flohr, Penny
Yuan, Wei
Sharp, Adam
de Bono, Johann
Maitland, Norman J.
Wisnovsky, Simon
Bertozzi, Carolyn R.
Heer, Rakesh
Guerrero, Ramon Hurtado
Daugaard, Mads
Leivo, Janne
Whitaker, Hayley
Pitteri, Sharon
Wang, Ning
Elliott, David J.
Schumann, Benjamin
Munkley, Jennifer
author_facet Scott, Emma
Hodgson, Kirsty
Calle, Beatriz
Turner, Helen
Cheung, Kathleen
Bermudez, Abel
Marques, Fernando Jose Garcia
Pye, Hayley
Yo, Edward Christopher
Islam, Khirul
Oo, Htoo Zarni
McClurg, Urszula L.
Wilson, Laura
Thomas, Huw
Frame, Fiona M.
Orozco-Moreno, Margarita
Bastian, Kayla
Arredondo, Hector M.
Roustan, Chloe
Gray, Melissa Anne
Kelly, Lois
Tolson, Aaron
Mellor, Ellie
Hysenaj, Gerald
Goode, Emily Archer
Garnham, Rebecca
Duxfield, Adam
Heavey, Susan
Stopka-Farooqui, Urszula
Haider, Aiman
Freeman, Alex
Singh, Saurabh
Johnston, Edward W.
Punwani, Shonit
Knight, Bridget
McCullagh, Paul
McGrath, John
Crundwell, Malcolm
Harries, Lorna
Bogdan, Denisa
Westaby, Daniel
Fowler, Gemma
Flohr, Penny
Yuan, Wei
Sharp, Adam
de Bono, Johann
Maitland, Norman J.
Wisnovsky, Simon
Bertozzi, Carolyn R.
Heer, Rakesh
Guerrero, Ramon Hurtado
Daugaard, Mads
Leivo, Janne
Whitaker, Hayley
Pitteri, Sharon
Wang, Ning
Elliott, David J.
Schumann, Benjamin
Munkley, Jennifer
author_sort Scott, Emma
collection PubMed
description Prostate cancer is the most common cancer in men and it is estimated that over 350,000 men worldwide die of prostate cancer every year. There remains an unmet clinical need to improve how clinically significant prostate cancer is diagnosed and develop new treatments for advanced disease. Aberrant glycosylation is a hallmark of cancer implicated in tumour growth, metastasis, and immune evasion. One of the key drivers of aberrant glycosylation is the dysregulated expression of glycosylation enzymes within the cancer cell. Here, we demonstrate using multiple independent clinical cohorts that the glycosyltransferase enzyme GALNT7 is upregulated in prostate cancer tissue. We show GALNT7 can identify men with prostate cancer, using urine and blood samples, with improved diagnostic accuracy than serum PSA alone. We also show that GALNT7 levels remain high in progression to castrate-resistant disease, and using in vitro and in vivo models, reveal that GALNT7 promotes prostate tumour growth. Mechanistically, GALNT7 can modify O-glycosylation in prostate cancer cells and correlates with cell cycle and immune signalling pathways. Our study provides a new biomarker to aid the diagnosis of clinically significant disease and cements GALNT7-mediated O-glycosylation as an important driver of prostate cancer progression.
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spelling pubmed-100200862023-03-18 Upregulation of GALNT7 in prostate cancer modifies O-glycosylation and promotes tumour growth Scott, Emma Hodgson, Kirsty Calle, Beatriz Turner, Helen Cheung, Kathleen Bermudez, Abel Marques, Fernando Jose Garcia Pye, Hayley Yo, Edward Christopher Islam, Khirul Oo, Htoo Zarni McClurg, Urszula L. Wilson, Laura Thomas, Huw Frame, Fiona M. Orozco-Moreno, Margarita Bastian, Kayla Arredondo, Hector M. Roustan, Chloe Gray, Melissa Anne Kelly, Lois Tolson, Aaron Mellor, Ellie Hysenaj, Gerald Goode, Emily Archer Garnham, Rebecca Duxfield, Adam Heavey, Susan Stopka-Farooqui, Urszula Haider, Aiman Freeman, Alex Singh, Saurabh Johnston, Edward W. Punwani, Shonit Knight, Bridget McCullagh, Paul McGrath, John Crundwell, Malcolm Harries, Lorna Bogdan, Denisa Westaby, Daniel Fowler, Gemma Flohr, Penny Yuan, Wei Sharp, Adam de Bono, Johann Maitland, Norman J. Wisnovsky, Simon Bertozzi, Carolyn R. Heer, Rakesh Guerrero, Ramon Hurtado Daugaard, Mads Leivo, Janne Whitaker, Hayley Pitteri, Sharon Wang, Ning Elliott, David J. Schumann, Benjamin Munkley, Jennifer Oncogene Article Prostate cancer is the most common cancer in men and it is estimated that over 350,000 men worldwide die of prostate cancer every year. There remains an unmet clinical need to improve how clinically significant prostate cancer is diagnosed and develop new treatments for advanced disease. Aberrant glycosylation is a hallmark of cancer implicated in tumour growth, metastasis, and immune evasion. One of the key drivers of aberrant glycosylation is the dysregulated expression of glycosylation enzymes within the cancer cell. Here, we demonstrate using multiple independent clinical cohorts that the glycosyltransferase enzyme GALNT7 is upregulated in prostate cancer tissue. We show GALNT7 can identify men with prostate cancer, using urine and blood samples, with improved diagnostic accuracy than serum PSA alone. We also show that GALNT7 levels remain high in progression to castrate-resistant disease, and using in vitro and in vivo models, reveal that GALNT7 promotes prostate tumour growth. Mechanistically, GALNT7 can modify O-glycosylation in prostate cancer cells and correlates with cell cycle and immune signalling pathways. Our study provides a new biomarker to aid the diagnosis of clinically significant disease and cements GALNT7-mediated O-glycosylation as an important driver of prostate cancer progression. Nature Publishing Group UK 2023-02-01 2023 /pmc/articles/PMC10020086/ /pubmed/36725887 http://dx.doi.org/10.1038/s41388-023-02604-x Text en © The Author(s) 2023 https://creativecommons.org/licenses/by/4.0/Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Article
Scott, Emma
Hodgson, Kirsty
Calle, Beatriz
Turner, Helen
Cheung, Kathleen
Bermudez, Abel
Marques, Fernando Jose Garcia
Pye, Hayley
Yo, Edward Christopher
Islam, Khirul
Oo, Htoo Zarni
McClurg, Urszula L.
Wilson, Laura
Thomas, Huw
Frame, Fiona M.
Orozco-Moreno, Margarita
Bastian, Kayla
Arredondo, Hector M.
Roustan, Chloe
Gray, Melissa Anne
Kelly, Lois
Tolson, Aaron
Mellor, Ellie
Hysenaj, Gerald
Goode, Emily Archer
Garnham, Rebecca
Duxfield, Adam
Heavey, Susan
Stopka-Farooqui, Urszula
Haider, Aiman
Freeman, Alex
Singh, Saurabh
Johnston, Edward W.
Punwani, Shonit
Knight, Bridget
McCullagh, Paul
McGrath, John
Crundwell, Malcolm
Harries, Lorna
Bogdan, Denisa
Westaby, Daniel
Fowler, Gemma
Flohr, Penny
Yuan, Wei
Sharp, Adam
de Bono, Johann
Maitland, Norman J.
Wisnovsky, Simon
Bertozzi, Carolyn R.
Heer, Rakesh
Guerrero, Ramon Hurtado
Daugaard, Mads
Leivo, Janne
Whitaker, Hayley
Pitteri, Sharon
Wang, Ning
Elliott, David J.
Schumann, Benjamin
Munkley, Jennifer
Upregulation of GALNT7 in prostate cancer modifies O-glycosylation and promotes tumour growth
title Upregulation of GALNT7 in prostate cancer modifies O-glycosylation and promotes tumour growth
title_full Upregulation of GALNT7 in prostate cancer modifies O-glycosylation and promotes tumour growth
title_fullStr Upregulation of GALNT7 in prostate cancer modifies O-glycosylation and promotes tumour growth
title_full_unstemmed Upregulation of GALNT7 in prostate cancer modifies O-glycosylation and promotes tumour growth
title_short Upregulation of GALNT7 in prostate cancer modifies O-glycosylation and promotes tumour growth
title_sort upregulation of galnt7 in prostate cancer modifies o-glycosylation and promotes tumour growth
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10020086/
https://www.ncbi.nlm.nih.gov/pubmed/36725887
http://dx.doi.org/10.1038/s41388-023-02604-x
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