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Expression and function of Kv1.3 channel in malignant T cells in Sézary syndrome

The voltage-gated potassium channel Kv1.3 (KCNA3) is expressed by a subset of chronically activated memory T cells and plays an important role in their activation and proliferation. Here, we show that primary malignant T cells isolated from patients with Sézary syndrome (SS) express Kv1.3 and are se...

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Autores principales: Hu, Tengpeng, Buus, Terkild Brink, Krejsgaard, Thorbjørn, Nansen, Anneline, Lundholt, Betina Kerstin, Spee, Pieter, Fredholm, Simon, Petersen, David Leander, Blümel, Edda, Gluud, Maria, Monteiro, Madalena N., Willerslev-Olsen, Andreas, Andersen, Mads Hald, Straten, Per thor, Met, Özcan, Stolearenco, Veronica, Fogh, Hanne, Gniadecki, Robert, Nastasi, Claudia, Litman, Thomas, Woetmann, Anders, Gjerdrum, Lise Mette Rahbek, Ødum, Niels
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6690676/
https://www.ncbi.nlm.nih.gov/pubmed/31448055
http://dx.doi.org/10.18632/oncotarget.27122
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author Hu, Tengpeng
Buus, Terkild Brink
Krejsgaard, Thorbjørn
Nansen, Anneline
Lundholt, Betina Kerstin
Spee, Pieter
Fredholm, Simon
Petersen, David Leander
Blümel, Edda
Gluud, Maria
Monteiro, Madalena N.
Willerslev-Olsen, Andreas
Andersen, Mads Hald
Straten, Per thor
Met, Özcan
Stolearenco, Veronica
Fogh, Hanne
Gniadecki, Robert
Nastasi, Claudia
Litman, Thomas
Woetmann, Anders
Gjerdrum, Lise Mette Rahbek
Ødum, Niels
author_facet Hu, Tengpeng
Buus, Terkild Brink
Krejsgaard, Thorbjørn
Nansen, Anneline
Lundholt, Betina Kerstin
Spee, Pieter
Fredholm, Simon
Petersen, David Leander
Blümel, Edda
Gluud, Maria
Monteiro, Madalena N.
Willerslev-Olsen, Andreas
Andersen, Mads Hald
Straten, Per thor
Met, Özcan
Stolearenco, Veronica
Fogh, Hanne
Gniadecki, Robert
Nastasi, Claudia
Litman, Thomas
Woetmann, Anders
Gjerdrum, Lise Mette Rahbek
Ødum, Niels
author_sort Hu, Tengpeng
collection PubMed
description The voltage-gated potassium channel Kv1.3 (KCNA3) is expressed by a subset of chronically activated memory T cells and plays an important role in their activation and proliferation. Here, we show that primary malignant T cells isolated from patients with Sézary syndrome (SS) express Kv1.3 and are sensitive to potent Kv1.3 inhibitors ShK and Vm24, but not sensitive to a less potent inhibitor [N17A/F32T]-AnTx. Kv1.3 blockade inhibits CD3/CD28-induced proliferation and IL-9 expression by SS cells in a concentration-dependent manner. In parallel, CD3/CD28-mediated CD25 induction is inhibited, whereas Kv1.3 blockade has no effect on apoptosis or cell death as judged by Annexin V and PI staining. In conclusion, we provide the first evidence that malignant T cells in SS express functional Kv1.3 channels and that Kv1.3 blockade inhibits activation-induced proliferation as well as cytokine and cytokine receptor expression in malignant T cells, suggesting that Kv1.3 is a potential target for therapy in SS.
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spelling pubmed-66906762019-08-23 Expression and function of Kv1.3 channel in malignant T cells in Sézary syndrome Hu, Tengpeng Buus, Terkild Brink Krejsgaard, Thorbjørn Nansen, Anneline Lundholt, Betina Kerstin Spee, Pieter Fredholm, Simon Petersen, David Leander Blümel, Edda Gluud, Maria Monteiro, Madalena N. Willerslev-Olsen, Andreas Andersen, Mads Hald Straten, Per thor Met, Özcan Stolearenco, Veronica Fogh, Hanne Gniadecki, Robert Nastasi, Claudia Litman, Thomas Woetmann, Anders Gjerdrum, Lise Mette Rahbek Ødum, Niels Oncotarget Research Paper The voltage-gated potassium channel Kv1.3 (KCNA3) is expressed by a subset of chronically activated memory T cells and plays an important role in their activation and proliferation. Here, we show that primary malignant T cells isolated from patients with Sézary syndrome (SS) express Kv1.3 and are sensitive to potent Kv1.3 inhibitors ShK and Vm24, but not sensitive to a less potent inhibitor [N17A/F32T]-AnTx. Kv1.3 blockade inhibits CD3/CD28-induced proliferation and IL-9 expression by SS cells in a concentration-dependent manner. In parallel, CD3/CD28-mediated CD25 induction is inhibited, whereas Kv1.3 blockade has no effect on apoptosis or cell death as judged by Annexin V and PI staining. In conclusion, we provide the first evidence that malignant T cells in SS express functional Kv1.3 channels and that Kv1.3 blockade inhibits activation-induced proliferation as well as cytokine and cytokine receptor expression in malignant T cells, suggesting that Kv1.3 is a potential target for therapy in SS. Impact Journals LLC 2019-08-06 /pmc/articles/PMC6690676/ /pubmed/31448055 http://dx.doi.org/10.18632/oncotarget.27122 Text en http://creativecommons.org/licenses/by/3.0/ Copyright: Hu et al. This is an open-access article distributed under the terms of the Creative Commons Attribution License 3.0 (CC BY 3.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Hu, Tengpeng
Buus, Terkild Brink
Krejsgaard, Thorbjørn
Nansen, Anneline
Lundholt, Betina Kerstin
Spee, Pieter
Fredholm, Simon
Petersen, David Leander
Blümel, Edda
Gluud, Maria
Monteiro, Madalena N.
Willerslev-Olsen, Andreas
Andersen, Mads Hald
Straten, Per thor
Met, Özcan
Stolearenco, Veronica
Fogh, Hanne
Gniadecki, Robert
Nastasi, Claudia
Litman, Thomas
Woetmann, Anders
Gjerdrum, Lise Mette Rahbek
Ødum, Niels
Expression and function of Kv1.3 channel in malignant T cells in Sézary syndrome
title Expression and function of Kv1.3 channel in malignant T cells in Sézary syndrome
title_full Expression and function of Kv1.3 channel in malignant T cells in Sézary syndrome
title_fullStr Expression and function of Kv1.3 channel in malignant T cells in Sézary syndrome
title_full_unstemmed Expression and function of Kv1.3 channel in malignant T cells in Sézary syndrome
title_short Expression and function of Kv1.3 channel in malignant T cells in Sézary syndrome
title_sort expression and function of kv1.3 channel in malignant t cells in sézary syndrome
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6690676/
https://www.ncbi.nlm.nih.gov/pubmed/31448055
http://dx.doi.org/10.18632/oncotarget.27122
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