4.8 Article

FBP1 regulates proliferation, metastasis, and chemoresistance by participating in C-MYC/STAT3 signaling axis in ovarian cancer

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ONCOGENE
卷 40, 期 40, 页码 5938-5949

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SPRINGERNATURE
DOI: 10.1038/s41388-021-01957-5

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资金

  1. National Natural Science Foundation of China [81502235, 81602078]
  2. National Human Genetic Resources Sharing Service Platform [2005DKA21300]
  3. Traditional Chinese Medicine Research Fund of Shanghai Municipal Commission of Health and Family Planning [WS-ZY1201]
  4. Guangdong Provincial Science and technology Program [2014A020212285]

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FBP1 expression is significantly decreased in ovarian cancer tissues and low expression predicts poor prognosis. Enhanced FBP1 expression suppresses cancer cell proliferation and invasion, increases sensitivity to chemotherapy.
Fructose-1,6-bisphosphatase (FBP1) is a rate-limiting enzyme in gluconeogenesis and an important tumor suppressor in human malignancies. Here, we aimed to investigate the expression profile of FBP1 in ovarian cancer, the molecular mechanisms that regulate FBP1 expression and to examine how the FBP1 regulatory axis contributes to tumorigenesis and progression in ovarian cancer. We showed that FBP1 expression was significantly decreased in ovarian cancer tissues compared with normal ovarian tissues, and low-FBP1 expression predicted poor prognosis in patients with ovarian cancer. The enhanced expression of FBP1 in ovarian cancer cell lines suppressed proliferation and 2-D/3-D invasion, reduced aerobic glycolysis, and sensitized cancer cells to cisplatin-induced apoptosis. Moreover, DNA methylation and C-MYC binding at the promoter inhibited FBP1 expression. Furthermore, through physical interactions with signal transducer and activator of transcription 3 (STAT3), FBP1 suppressed nuclear translocation of STAT3 and exerted its non-metabolic enzymatic activity to induce the dysfunction of STAT3. Thus, our study suggests that FBP1 may be a valuable prognostic predictor for ovarian cancer. C-MYC-dependent downregulation of FBP1 acted as a tumor suppressor via modulating STAT3, and the C-MYC/FBP1/STAT3 axis could be a therapeutic target.

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