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1.
Oncogene ; 36(39): 5532-5543, 2017 09 28.
Article En | MEDLINE | ID: mdl-28581520

Krüppel-like transcription factor 10 (KLF10), also named as TIEG1, plays essential roles in mediating transforming growth factor beta (TGFß) signaling and has been shown to function as a tumor suppressor in multiple cancer types. However, its roles in mediating cancer progression in vivo have yet to be fully characterized. Here, we have employed two well-characterized Pdx-1CreLSL-KrasG12D and Pdx-1CreLSL-KrasG12Dp53L/L pancreatic cancer models to ablate KLF10 expression and determine the impact of KLF10 deletion on tumor development and progression. We show that loss of KLF10 cooperates with KrasG12D leading to an invasive and widely metastatic phenotype of pancreatic ductal adenocarcinoma (PDAC). Mechanistically, loss of KLF10 in PDAC is shown to increase distant metastases and cancer stemness through activation of SDF-1/CXCR4 and AP-1 pathways. Furthermore, we demonstrate that targeting the SDF-1/CXCR4 pathway in the context of KLF10 deletion substantially suppresses PDAC progression suggesting that inhibition of this pathway represents a novel therapeutic strategy for PDAC treatment.


Carcinoma, Pancreatic Ductal/metabolism , Chemokine CXCL12/metabolism , Early Growth Response Transcription Factors/deficiency , Kruppel-Like Transcription Factors/deficiency , Pancreatic Neoplasms/metabolism , Animals , Carcinoma, Pancreatic Ductal/genetics , Carcinoma, Pancreatic Ductal/pathology , Chemokine CXCL12/genetics , Early Growth Response Transcription Factors/genetics , Early Growth Response Transcription Factors/metabolism , Humans , Kruppel-Like Transcription Factors/genetics , Kruppel-Like Transcription Factors/metabolism , Mice , Mice, Inbred C57BL , Neoplasm Metastasis , Pancreatic Neoplasms/genetics , Pancreatic Neoplasms/pathology , Proto-Oncogene Proteins p21(ras)/genetics , Signal Transduction , Survival Rate , Tumor Suppressor Protein p53/genetics
2.
Oncogene ; 31(18): 2335-49, 2012 May 03.
Article En | MEDLINE | ID: mdl-21963854

Expression of viral proteins causes important epigenetic changes leading to abnormal cell growth. Whether viral proteins directly target histone methyltransferases (HMTs), a key family enzyme for epigenetic regulation, and modulate their enzymatic activities remains elusive. Here we show that the E6 proteins of both low-risk and high-risk human papillomavirus (HPV) interact with three coactivator HMTs, CARM1, PRMT1 and SET7, and downregulate their enzymatic activities in vitro and in HPV-transformed HeLa cells. Furthermore, these three HMTs are required for E6 to attenuate p53 transactivation function. Mechanistically, E6 hampers CARM1- and PRMT1-catalyzed histone methylation at p53-responsive promoters, and suppresses the binding of p53 to chromatinized DNA independently of E6-mediated p53 degradation. p53 pre-methylated at lysine-372 (p53K372 mono-methylation) by SET7 protects p53 from E6-induced degradation. Consistently, E6 downregulates p53K372 mono-methylation and thus reduces p53 protein stability. As a result of the E6-mediated inhibition of HMT activity, expression of p53 downstream genes is suppressed. Together, our results not only reveal a clever approach for the virus to interfere with p53 function, but also demonstrate the modulation of HMT activity as a novel mechanism of epigenetic regulation by a viral oncoprotein.


Cell Transformation, Viral/genetics , DNA-Binding Proteins , Histone-Lysine N-Methyltransferase/metabolism , Oncogene Proteins, Viral , Repressor Proteins , Transcription, Genetic , Tumor Suppressor Protein p53 , DNA-Binding Proteins/genetics , DNA-Binding Proteins/metabolism , Epigenesis, Genetic , Gene Expression Regulation, Enzymologic , Gene Expression Regulation, Viral , HeLa Cells , Histone Methyltransferases , Humans , Oncogene Proteins, Viral/genetics , Oncogene Proteins, Viral/metabolism , Protein-Arginine N-Methyltransferases/metabolism , Repressor Proteins/genetics , Repressor Proteins/metabolism , Tumor Suppressor Protein p53/genetics , Tumor Suppressor Protein p53/metabolism
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