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10.1158/0008-5472.CAN-16-2589

http://scihub22266oqcxt.onion/10.1158/0008-5472.CAN-16-2589
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suck abstract from ncbi


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pmid28249899
      Cancer+Res 2017 ; 77 (9 ): 2387-2400
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  • Krüppel-like Transcription Factor KLF10 Suppresses TGF?-Induced Epithelial-to-Mesenchymal Transition via a Negative Feedback Mechanism #MMPMID28249899
  • Mishra VK ; Subramaniam M ; Kari V ; Pitel KS ; Baumgart SJ ; Naylor RM ; Nagarajan S ; Wegwitz F ; Ellenrieder V ; Hawse JR ; Johnsen SA
  • Cancer Res 2017[May]; 77 (9 ): 2387-2400 PMID28249899 show ga
  • TGF?-SMAD signaling exerts a contextual effect that suppresses malignant growth early in epithelial tumorigenesis but promotes metastasis at later stages. Longstanding challenges in resolving this functional dichotomy may uncover new strategies to treat advanced carcinomas. The Krüppel-like transcription factor, KLF10, is a pivotal effector of TGF?/SMAD signaling that mediates antiproliferative effects of TGF?. In this study, we show how KLF10 opposes the prometastatic effects of TGF? by limiting its ability to induce epithelial-to-mesenchymal transition (EMT). KLF10 depletion accentuated induction of EMT as assessed by multiple metrics. KLF10 occupied GC-rich sequences in the promoter region of the EMT-promoting transcription factor SLUG/SNAI2, repressing its transcription by recruiting HDAC1 and licensing the removal of activating histone acetylation marks. In clinical specimens of lung adenocarcinoma, low KLF10 expression associated with decreased patient survival, consistent with a pivotal role for KLF10 in distinguishing the antiproliferative versus prometastatic functions of TGF?. Our results establish that KLF10 functions to suppress TGF?-induced EMT, establishing a molecular basis for the dichotomy of TGF? function during tumor progression. Cancer Res; 77(9); 2387-400. ©2017 AACR.
  • |*Feedback, Physiological [MESH]
  • |A549 Cells [MESH]
  • |Adenocarcinoma of Lung [MESH]
  • |Adenocarcinoma/*genetics/pathology [MESH]
  • |Animals [MESH]
  • |Early Growth Response Transcription Factors/*genetics [MESH]
  • |Epithelial-Mesenchymal Transition/*genetics [MESH]
  • |Humans [MESH]
  • |Kruppel-Like Transcription Factors/*genetics [MESH]
  • |Lung Neoplasms/*genetics/pathology [MESH]
  • |Mice, Knockout [MESH]
  • |Patients [MESH]
  • |Promoter Regions, Genetic [MESH]
  • |Signal Transduction [MESH]
  • |Snail Family Transcription Factors/genetics [MESH]


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