The cancer-associated cell migration protein TSPAN1 is under control of androgens and its upregulation increases prostate cancer cell migration

Abstract Cell migration drives cell invasion and metastatic progression in prostate cancer and is a major cause of mortality and morbidity. However the mechanisms driving cell migration in prostate cancer patients are not fully understood. We previously identified the cancer-associated cell migratio...

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Autores principales: Jennifer Munkley, Urszula L. McClurg, Karen E. Livermore, Ingrid Ehrmann, Bridget Knight, Paul Mccullagh, John Mcgrath, Malcolm Crundwell, Lorna W. Harries, Hing Y. Leung, Ian G. Mills, Craig N. Robson, Prabhakar Rajan, David J. Elliott
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Publicado: Nature Portfolio 2017
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Acceso en línea:https://doaj.org/article/49dff917c9574813aafb665056c1069f
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spelling oai:doaj.org-article:49dff917c9574813aafb665056c1069f2021-12-02T11:40:14ZThe cancer-associated cell migration protein TSPAN1 is under control of androgens and its upregulation increases prostate cancer cell migration10.1038/s41598-017-05489-52045-2322https://doaj.org/article/49dff917c9574813aafb665056c1069f2017-07-01T00:00:00Zhttps://doi.org/10.1038/s41598-017-05489-5https://doaj.org/toc/2045-2322Abstract Cell migration drives cell invasion and metastatic progression in prostate cancer and is a major cause of mortality and morbidity. However the mechanisms driving cell migration in prostate cancer patients are not fully understood. We previously identified the cancer-associated cell migration protein Tetraspanin 1 (TSPAN1) as a clinically relevant androgen regulated target in prostate cancer. Here we find that TSPAN1 is acutely induced by androgens, and is significantly upregulated in prostate cancer relative to both normal prostate tissue and benign prostate hyperplasia (BPH). We also show for the first time, that TSPAN1 expression in prostate cancer cells controls the expression of key proteins involved in cell migration. Stable upregulation of TSPAN1 in both DU145 and PC3 cells significantly increased cell migration and induced the expression of the mesenchymal markers SLUG and ARF6. Our data suggest TSPAN1 is an androgen-driven contributor to cell survival and motility in prostate cancer.Jennifer MunkleyUrszula L. McClurgKaren E. LivermoreIngrid EhrmannBridget KnightPaul MccullaghJohn McgrathMalcolm CrundwellLorna W. HarriesHing Y. LeungIan G. MillsCraig N. RobsonPrabhakar RajanDavid J. ElliottNature PortfolioarticleMedicineRScienceQENScientific Reports, Vol 7, Iss 1, Pp 1-11 (2017)
institution DOAJ
collection DOAJ
language EN
topic Medicine
R
Science
Q
spellingShingle Medicine
R
Science
Q
Jennifer Munkley
Urszula L. McClurg
Karen E. Livermore
Ingrid Ehrmann
Bridget Knight
Paul Mccullagh
John Mcgrath
Malcolm Crundwell
Lorna W. Harries
Hing Y. Leung
Ian G. Mills
Craig N. Robson
Prabhakar Rajan
David J. Elliott
The cancer-associated cell migration protein TSPAN1 is under control of androgens and its upregulation increases prostate cancer cell migration
description Abstract Cell migration drives cell invasion and metastatic progression in prostate cancer and is a major cause of mortality and morbidity. However the mechanisms driving cell migration in prostate cancer patients are not fully understood. We previously identified the cancer-associated cell migration protein Tetraspanin 1 (TSPAN1) as a clinically relevant androgen regulated target in prostate cancer. Here we find that TSPAN1 is acutely induced by androgens, and is significantly upregulated in prostate cancer relative to both normal prostate tissue and benign prostate hyperplasia (BPH). We also show for the first time, that TSPAN1 expression in prostate cancer cells controls the expression of key proteins involved in cell migration. Stable upregulation of TSPAN1 in both DU145 and PC3 cells significantly increased cell migration and induced the expression of the mesenchymal markers SLUG and ARF6. Our data suggest TSPAN1 is an androgen-driven contributor to cell survival and motility in prostate cancer.
format article
author Jennifer Munkley
Urszula L. McClurg
Karen E. Livermore
Ingrid Ehrmann
Bridget Knight
Paul Mccullagh
John Mcgrath
Malcolm Crundwell
Lorna W. Harries
Hing Y. Leung
Ian G. Mills
Craig N. Robson
Prabhakar Rajan
David J. Elliott
author_facet Jennifer Munkley
Urszula L. McClurg
Karen E. Livermore
Ingrid Ehrmann
Bridget Knight
Paul Mccullagh
John Mcgrath
Malcolm Crundwell
Lorna W. Harries
Hing Y. Leung
Ian G. Mills
Craig N. Robson
Prabhakar Rajan
David J. Elliott
author_sort Jennifer Munkley
title The cancer-associated cell migration protein TSPAN1 is under control of androgens and its upregulation increases prostate cancer cell migration
title_short The cancer-associated cell migration protein TSPAN1 is under control of androgens and its upregulation increases prostate cancer cell migration
title_full The cancer-associated cell migration protein TSPAN1 is under control of androgens and its upregulation increases prostate cancer cell migration
title_fullStr The cancer-associated cell migration protein TSPAN1 is under control of androgens and its upregulation increases prostate cancer cell migration
title_full_unstemmed The cancer-associated cell migration protein TSPAN1 is under control of androgens and its upregulation increases prostate cancer cell migration
title_sort cancer-associated cell migration protein tspan1 is under control of androgens and its upregulation increases prostate cancer cell migration
publisher Nature Portfolio
publishDate 2017
url https://doaj.org/article/49dff917c9574813aafb665056c1069f
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