WNT-5A, a key player in embryonic development and post-natal homeostasis, has been associated with a myriad of pathological conditions including malignant, fibroproliferative and inflammatory disorders. Previously, we have identified WNT-5A as a transcriptional target of TGF-β in airway smooth muscle cells and demonstrated its function as a mediator of airway remodeling. Here, we investigated the molecular mechanisms underlying TGF-β-induced WNT-5A expression. We show that TGF-β-activated kinase 1 (TAK1) is a critical mediator of WNT-5A expression as its pharmacological inhibition or siRNA-mediated silencing reduced TGF-β induction of WNT-5A. Furthermore, we show that TAK1 engages p38 and c-Jun N-terminal kinase (JNK) signaling which redund...
<p>(A) <i>De novo</i> protein synthesis is required for TGF-β-induced WNT-5A expression. Airway smoo...
Pera T, Sami R, Zaagsma J, Meurs H. TAK1 plays a major role in growth factor-induced phenotypic modu...
Pera T, Sami R, Zaagsma J, Meurs H. TAK1 plays a major role in growth factor-induced phenotypic modu...
WNT-5A, a key player in embryonic development and post-natal homeostasis, has been associated with a...
<div><p>WNT-5A, a key player in embryonic development and post-natal homeostasis, has been associate...
WNT-5A, a key player in embryonic development and post-natal homeostasis, has been associated with a...
WNT-5A, a key player in embryonic development and post-natal homeostasis, has been associated with a...
WNT-5A, a key player in embryonic development and post-natal homeostasis, has been associated with a...
Transforming growth factor beta (TGF-beta), a key mediator of fibrotic responses, is increased in as...
<p>(A-C) TAK1 signaling in total β-catenin regulation. Airway smooth muscle cells were either left u...
Transforming growth factor beta (TGF-beta), a key mediator of fibrotic responses, is increased in as...
Transforming growth factor beta (TGF-beta), a key mediator of fibrotic responses, is increased in as...
Transforming growth factor beta (TGF-beta), a key mediator of fibrotic responses, is increased in as...
Transforming growth factor beta (TGF-beta), a key mediator of fibrotic responses, is increased in as...
<p>(A-B) Mithramycin A attenuates WNT-5A mRNA and protein expression. (A) Cells were stimulated with...
<p>(A) <i>De novo</i> protein synthesis is required for TGF-β-induced WNT-5A expression. Airway smoo...
Pera T, Sami R, Zaagsma J, Meurs H. TAK1 plays a major role in growth factor-induced phenotypic modu...
Pera T, Sami R, Zaagsma J, Meurs H. TAK1 plays a major role in growth factor-induced phenotypic modu...
WNT-5A, a key player in embryonic development and post-natal homeostasis, has been associated with a...
<div><p>WNT-5A, a key player in embryonic development and post-natal homeostasis, has been associate...
WNT-5A, a key player in embryonic development and post-natal homeostasis, has been associated with a...
WNT-5A, a key player in embryonic development and post-natal homeostasis, has been associated with a...
WNT-5A, a key player in embryonic development and post-natal homeostasis, has been associated with a...
Transforming growth factor beta (TGF-beta), a key mediator of fibrotic responses, is increased in as...
<p>(A-C) TAK1 signaling in total β-catenin regulation. Airway smooth muscle cells were either left u...
Transforming growth factor beta (TGF-beta), a key mediator of fibrotic responses, is increased in as...
Transforming growth factor beta (TGF-beta), a key mediator of fibrotic responses, is increased in as...
Transforming growth factor beta (TGF-beta), a key mediator of fibrotic responses, is increased in as...
Transforming growth factor beta (TGF-beta), a key mediator of fibrotic responses, is increased in as...
<p>(A-B) Mithramycin A attenuates WNT-5A mRNA and protein expression. (A) Cells were stimulated with...
<p>(A) <i>De novo</i> protein synthesis is required for TGF-β-induced WNT-5A expression. Airway smoo...
Pera T, Sami R, Zaagsma J, Meurs H. TAK1 plays a major role in growth factor-induced phenotypic modu...
Pera T, Sami R, Zaagsma J, Meurs H. TAK1 plays a major role in growth factor-induced phenotypic modu...