Javascript must be enabled to continue!
KLF17 empowers TGF-β/Smad signaling by targeting Smad3-dependent pathway to suppress tumor growth and metastasis during cancer progression
View through CrossRef
AbstractInhibition of tumor suppressive signaling is linked to cancer progression, metastasis and epithelial–mesenchymal transition (EMT). Transforming growth factor-β1 (TGF-β)/Smad signaling plays an important role in tumor suppression. Kruppel-like-factor 17 (KLF17) is a negative regulator of metastasis and EMT. However, underlying mechanisms leading to tumor suppressive and anti-metastatic function of KLF17 still remains unknown. Here, we show that KLF17 plays an integral role in potentiating TGF-β/Smad signaling via Smad3-dependent pathway to suppress tumor progression. Intriguingly, TGF-β/Smad3 signaling induces KLF17 expression, generating a positive feedback loop. TGF-β/Smad3–KLF17 loop is critical for anti-metastasis and tumor inhibition in cancer cells. Mechanistically, silencing KLF17 reduced Smad3–DNA complex formation on Smad binding element (SBE) and affects the expression of TGF-β/Smad target genes. Moreover, KLF17 alters Smad3 binding pattern on chromatin. KLF17 regulates TGF-β target genes that are Smad3-dependent. Smad3 and KLF17 physically interact with each other via KLF17 responsive elements/SBE region. Intriguingly, TGF-β stimulates the recruitment of KLF17 on chromatin to subsets of metastasis-associated genes. Functionally, depletion of KLF17 enhanced tumorigenic features in cancer cells. KLF17 is critical for full cytostatic function of TGF-β/Smad signaling. Clinically, KLF17 expression significantly decreases during advance HCC. KLF17 shows positive correlation with Smad3 levels in cancer samples. Our data shows that enhance KLF17 activity has important therapeutic implications for targeted-therapies aimed at TGF-β/Smad3 pathway. These findings define novel mechanism by which TGF-β/Smad–KLF17 pathway mutually affect each other during cancer metastasis, provide a new model of regulation of TGF-β/Smad signaling by KLF17 and defines new insights into anti-metastatic function of KLF17.
Title: KLF17 empowers TGF-β/Smad signaling by targeting Smad3-dependent pathway to suppress tumor growth and metastasis during cancer progression
Description:
AbstractInhibition of tumor suppressive signaling is linked to cancer progression, metastasis and epithelial–mesenchymal transition (EMT).
Transforming growth factor-β1 (TGF-β)/Smad signaling plays an important role in tumor suppression.
Kruppel-like-factor 17 (KLF17) is a negative regulator of metastasis and EMT.
However, underlying mechanisms leading to tumor suppressive and anti-metastatic function of KLF17 still remains unknown.
Here, we show that KLF17 plays an integral role in potentiating TGF-β/Smad signaling via Smad3-dependent pathway to suppress tumor progression.
Intriguingly, TGF-β/Smad3 signaling induces KLF17 expression, generating a positive feedback loop.
TGF-β/Smad3–KLF17 loop is critical for anti-metastasis and tumor inhibition in cancer cells.
Mechanistically, silencing KLF17 reduced Smad3–DNA complex formation on Smad binding element (SBE) and affects the expression of TGF-β/Smad target genes.
Moreover, KLF17 alters Smad3 binding pattern on chromatin.
KLF17 regulates TGF-β target genes that are Smad3-dependent.
Smad3 and KLF17 physically interact with each other via KLF17 responsive elements/SBE region.
Intriguingly, TGF-β stimulates the recruitment of KLF17 on chromatin to subsets of metastasis-associated genes.
Functionally, depletion of KLF17 enhanced tumorigenic features in cancer cells.
KLF17 is critical for full cytostatic function of TGF-β/Smad signaling.
Clinically, KLF17 expression significantly decreases during advance HCC.
KLF17 shows positive correlation with Smad3 levels in cancer samples.
Our data shows that enhance KLF17 activity has important therapeutic implications for targeted-therapies aimed at TGF-β/Smad3 pathway.
These findings define novel mechanism by which TGF-β/Smad–KLF17 pathway mutually affect each other during cancer metastasis, provide a new model of regulation of TGF-β/Smad signaling by KLF17 and defines new insights into anti-metastatic function of KLF17.
Related Results
Abstract 1635: MiR-21/Smad 7 signaling determines TGF-β1-induced cancer associated fibroblast (CAF) formation.
Abstract 1635: MiR-21/Smad 7 signaling determines TGF-β1-induced cancer associated fibroblast (CAF) formation.
Abstract
Tumor-secreted growth factors such as TGF-β1 transform adjacent normal fibroblasts into cancer-associated fibroblasts (CAF) which is a major source of CAF. ...
Abstract 4706: Gene and protein expression of TGF-beta signaling pathway molecules in women undergoing reduction mammoplasty
Abstract 4706: Gene and protein expression of TGF-beta signaling pathway molecules in women undergoing reduction mammoplasty
Abstract
Gene and protein expression of TGF-beta signaling pathway molecules in women undergoing reduction mammoplasty.
Introduction: The TGF- β signa...
Abstract 407: Loss of Smad3 alters host-microbial interactions, predisposing the colonic epithelium to inflammation
Abstract 407: Loss of Smad3 alters host-microbial interactions, predisposing the colonic epithelium to inflammation
Abstract
Introduction: The TGFβ pathway is mutated in up to 30% of human colon cancers. Genetically Engineered Mouse Models (GEMs) with deficient TGFβ signaling mode...
Complex Collision Tumors: A Systematic Review
Complex Collision Tumors: A Systematic Review
Abstract
Introduction: A collision tumor consists of two distinct neoplastic components located within the same organ, separated by stromal tissue, without histological intermixing...
Radiation Resistance of Double Knockout (DKO) Smad3-/- Fancd2-/- (129/Sv) Mouse Bone Marrow Stromal Cell Lines
Radiation Resistance of Double Knockout (DKO) Smad3-/- Fancd2-/- (129/Sv) Mouse Bone Marrow Stromal Cell Lines
Abstract
Introduction: Bone marrow progenitor cells from Fanconi Anemia (FA) patients have a hyperactive TGF-β signaling pathway which may explain hematopoietic stem...
Ethyl Acetate Extract from Wenxia Formula (WFEA) Attenuates Immunosuppression in Lung Cancer by Inhibiting Treg Differentiation via Blockade of TGF-Β/Smad Signaling
Ethyl Acetate Extract from Wenxia Formula (WFEA) Attenuates Immunosuppression in Lung Cancer by Inhibiting Treg Differentiation via Blockade of TGF-Β/Smad Signaling
Introduction:
The ethyl acetate extract of Wenxia Formula (WFEA) is the most effective
antitumor component of the Wenxia formula. Its key active components, emo...
Abstract 4866: The dynamic interaction of nuclear Smads with peri- and centromeric heterochromatin is involved in the modulation of histone modification and chromatin structure
Abstract 4866: The dynamic interaction of nuclear Smads with peri- and centromeric heterochromatin is involved in the modulation of histone modification and chromatin structure
Abstract
Smads are intracellular signaling transducers of TGF-β family ligands. Through TGF-β activation, phosphorylated R-Smads (Smad2/3) form active heteromeric co...
Galectin-3 Induces Atrial Fibrosis by Activating the TGF-β1/Smad Pathway in Patients with Atrial Fibrillation
Galectin-3 Induces Atrial Fibrosis by Activating the TGF-β1/Smad Pathway in Patients with Atrial Fibrillation
<b><i>Background:</i></b> Atrial fibrosis plays a critical role in the occurrence and maintenance of atrial fibrillation. The role of TGF-β1 in mediating at...

