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In Vivo Knockdown of TAK1 Accelerates Bone Marrow Proliferation/Differentiation and Induces Systemic Inflammation

TAK1 (TGF-β Activated Kinase 1) is a MAPK kinase kinase, which activates the p38- and JNK-MAPK and NF-κB pathways downstream of receptors such as Toll-Like-, cytokine- and T-cell and B-cell receptors. Representing such an important node in the pro-inflammatory signal-transduction network, the functi...

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Autores principales: Vink, Paul M., Smout, Wendy M., Driessen-Engels, Lilian J., de Bruin, Alex M., Delsing, Dianne, Krajnc-Franken, Magda A., Jansen, Aswin J., Rovers, Eric F., van Puijenbroek, André A., Kaptein, Allard, Nolte, Martijn A., Garritsen, Anja, van Eenennaam, Hans
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3591390/
https://www.ncbi.nlm.nih.gov/pubmed/23505428
http://dx.doi.org/10.1371/journal.pone.0057348
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author Vink, Paul M.
Smout, Wendy M.
Driessen-Engels, Lilian J.
de Bruin, Alex M.
Delsing, Dianne
Krajnc-Franken, Magda A.
Jansen, Aswin J.
Rovers, Eric F.
van Puijenbroek, André A.
Kaptein, Allard
Nolte, Martijn A.
Garritsen, Anja
van Eenennaam, Hans
author_facet Vink, Paul M.
Smout, Wendy M.
Driessen-Engels, Lilian J.
de Bruin, Alex M.
Delsing, Dianne
Krajnc-Franken, Magda A.
Jansen, Aswin J.
Rovers, Eric F.
van Puijenbroek, André A.
Kaptein, Allard
Nolte, Martijn A.
Garritsen, Anja
van Eenennaam, Hans
author_sort Vink, Paul M.
collection PubMed
description TAK1 (TGF-β Activated Kinase 1) is a MAPK kinase kinase, which activates the p38- and JNK-MAPK and NF-κB pathways downstream of receptors such as Toll-Like-, cytokine- and T-cell and B-cell receptors. Representing such an important node in the pro-inflammatory signal-transduction network, the function of TAK1 has been studied extensively. TAK1 knock-out mice are embryonic lethal, while conditional knock-out mice demonstrated either a pro- or anti-inflammatory function. To study the function of TAK1 protein in the adult immune system, we generated and characterized a transgenic mouse expressing TAK1 shRNA under the control of a doxycycline-inducible promoter. Following treatment of TAK-1 shRNA transgenic mice with doxycycline an effective knockdown of TAK1 protein levels was observed in lymphoid organs and cells in the peritoneal cavity (>50% down regulation). TAK1 knockdown resulted in significant changes in leukocyte populations in blood, bone marrow, spleen and peritoneal cavity. Upon TAK1 knockdown mice demonstrated splenomegaly, signs of systemic inflammation (increased levels of circulating cytokines and increase in cellularity of the B-cell areas and in germinal center development in the follicles) and degenerative changes in heart, kidneys and liver. Not surprisingly, TAK1-Tg mice treated with LPS or anti-CD3 antibodies showed enhanced cytokine/chemokine secretion. Finally, analysis of progenitor cells in the bone marrow upon doxycycline treatment showed increased proliferation and differentiation of myeloid progenitor cells. Given the similarity of the phenotype with TGF-β genetic models, our data suggest that in our model the function of TAK1 in TGF-β signal-transduction is overruling its function in pro-inflammatory signaling.
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spelling pubmed-35913902013-03-15 In Vivo Knockdown of TAK1 Accelerates Bone Marrow Proliferation/Differentiation and Induces Systemic Inflammation Vink, Paul M. Smout, Wendy M. Driessen-Engels, Lilian J. de Bruin, Alex M. Delsing, Dianne Krajnc-Franken, Magda A. Jansen, Aswin J. Rovers, Eric F. van Puijenbroek, André A. Kaptein, Allard Nolte, Martijn A. Garritsen, Anja van Eenennaam, Hans PLoS One Research Article TAK1 (TGF-β Activated Kinase 1) is a MAPK kinase kinase, which activates the p38- and JNK-MAPK and NF-κB pathways downstream of receptors such as Toll-Like-, cytokine- and T-cell and B-cell receptors. Representing such an important node in the pro-inflammatory signal-transduction network, the function of TAK1 has been studied extensively. TAK1 knock-out mice are embryonic lethal, while conditional knock-out mice demonstrated either a pro- or anti-inflammatory function. To study the function of TAK1 protein in the adult immune system, we generated and characterized a transgenic mouse expressing TAK1 shRNA under the control of a doxycycline-inducible promoter. Following treatment of TAK-1 shRNA transgenic mice with doxycycline an effective knockdown of TAK1 protein levels was observed in lymphoid organs and cells in the peritoneal cavity (>50% down regulation). TAK1 knockdown resulted in significant changes in leukocyte populations in blood, bone marrow, spleen and peritoneal cavity. Upon TAK1 knockdown mice demonstrated splenomegaly, signs of systemic inflammation (increased levels of circulating cytokines and increase in cellularity of the B-cell areas and in germinal center development in the follicles) and degenerative changes in heart, kidneys and liver. Not surprisingly, TAK1-Tg mice treated with LPS or anti-CD3 antibodies showed enhanced cytokine/chemokine secretion. Finally, analysis of progenitor cells in the bone marrow upon doxycycline treatment showed increased proliferation and differentiation of myeloid progenitor cells. Given the similarity of the phenotype with TGF-β genetic models, our data suggest that in our model the function of TAK1 in TGF-β signal-transduction is overruling its function in pro-inflammatory signaling. Public Library of Science 2013-03-07 /pmc/articles/PMC3591390/ /pubmed/23505428 http://dx.doi.org/10.1371/journal.pone.0057348 Text en © 2013 Vink et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Vink, Paul M.
Smout, Wendy M.
Driessen-Engels, Lilian J.
de Bruin, Alex M.
Delsing, Dianne
Krajnc-Franken, Magda A.
Jansen, Aswin J.
Rovers, Eric F.
van Puijenbroek, André A.
Kaptein, Allard
Nolte, Martijn A.
Garritsen, Anja
van Eenennaam, Hans
In Vivo Knockdown of TAK1 Accelerates Bone Marrow Proliferation/Differentiation and Induces Systemic Inflammation
title In Vivo Knockdown of TAK1 Accelerates Bone Marrow Proliferation/Differentiation and Induces Systemic Inflammation
title_full In Vivo Knockdown of TAK1 Accelerates Bone Marrow Proliferation/Differentiation and Induces Systemic Inflammation
title_fullStr In Vivo Knockdown of TAK1 Accelerates Bone Marrow Proliferation/Differentiation and Induces Systemic Inflammation
title_full_unstemmed In Vivo Knockdown of TAK1 Accelerates Bone Marrow Proliferation/Differentiation and Induces Systemic Inflammation
title_short In Vivo Knockdown of TAK1 Accelerates Bone Marrow Proliferation/Differentiation and Induces Systemic Inflammation
title_sort in vivo knockdown of tak1 accelerates bone marrow proliferation/differentiation and induces systemic inflammation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3591390/
https://www.ncbi.nlm.nih.gov/pubmed/23505428
http://dx.doi.org/10.1371/journal.pone.0057348
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