4.7 Article

A Positive Feedback Loop of lncRNA-PVT1 and FOXM1 Facilitates Gastric Cancer Growth and Invasion

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CLINICAL CANCER RESEARCH
卷 23, 期 8, 页码 2071-2080

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AMER ASSOC CANCER RESEARCH
DOI: 10.1158/1078-0432.CCR-16-0742

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  1. Science and Technology Commission of Shanghai Municipality [10DJ1400501, 15495810300]
  2. National Clinical Key Discipline
  3. Priority of Shanghai key discipline of medicine
  4. Shanghai R&D public service platform construction projects [12DZ2295100]
  5. National Natural Science Foundation of China [81602269, 81602078, 81472220, 81272299]
  6. Hospital Foundation of Fudan University Shanghai Cancer Center [YJ201504]
  7. Shanghai Hospital Development Center Emerging Advanced Technology Joint Research Project [HDC12014105]
  8. Shanghai Key Developing Disciplines [2015ZB0201]
  9. Shanghai Science and Technology Development Fund [15ZR 1407400]
  10. Domestic Science and Technology Cooperation Project [14495800300]

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Purpose: The long, noncoding RNA (lncRNA) PVT1 is an important epigenetic regulator with a critical role in human tumors. Here, we aimed to investigate the clinical application and the potential molecular mechanisms of PVT1 in gastric cancer tumorigenesis and progression. Experimental Design: The expression level of PVT1 was determined by RT-qPCR analysis in 190 pairs of gastric cancer tissues and adjacent normal gastric mucosa tissues (ANT). The biologic functions of PVT1 were assessed by in vitro and in vivo functional experiments. RNA protein pull-down assays and LS/MS mass spectrometry analysis were performed to detect and identify the PVT1-interacting protein FOXM1. Protein-RNA immunoprecipitation assays were conducted to examine the interaction of FOXM1 and PVT1. Chromatin immunoprecipitation (ChIP) and luciferase analyses were utilized to identify the binding site of FOXM1 on the PVT1 promoter. Results: The lncRNA PVT1 was significantly upregulated in gastric cancer tissues compared with ANTs. High expression of PVT1 predicted poor prognosis in patients with gastric cancer. PVT1 enhanced gastric cancer cell proliferation and invasion in vitro and in vivo. PVT1 directly bound FOXM1 protein and increased FOXM1 posttranslationally. Moreover, PVT1 is also a FOXM1-responsive lncRNA, and FOXM1 directly binds to the PVT1 promoter to activate its transcription. Finally, PVT1 fulfilled its oncogenic functions in a FOXM1-mediated manner. Conclusions: Our study suggests that PVT1 promotes tumor progression by interacting with FOXM1. PVT1 may be a valuable prognostic predictor for gastric cancer, and the positive feedback loop of PVT1-FOXM1 could be a therapeutic target in pharmacologic strategies. (C) 2016 AACR.

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