4.7 Article

MicroRNA-30d promotes angiogenesis and tumor growth via MYPT1/c-JUN/VEGFA pathway and predicts aggressive outcome in prostate cancer

Journal

MOLECULAR CANCER
Volume 16, Issue -, Pages -

Publisher

BMC
DOI: 10.1186/s12943-017-0615-x

Keywords

Prostate cancer; MicroRNA-30d; Myosin phosphatase targeting subunit 1; Prognosis; Tumor angiogenesis

Funding

  1. National Key Basic Research Program of China [2015CB553706]
  2. National Natural Science Foundation of China [81571427, 81272813, 81641102, 81470983]
  3. Science and Technology Project of Guangdong Province [2016A020215018, 2013B021800055]
  4. Guangzhou Municipal Science and Technology [2014 J4100072]
  5. Key Laboratory of Clinical Molecular Medicine and Diagnostics
  6. NIH/NCI [P01 CA120964]
  7. Beijing Nova program [Z1511000003150126]

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Background: Even though aberrant expression of microRNA (miR)-30d has been reported in prostate cancer (PCa), its associations with cancer progression remain contradictory. The aim of this study was to investigate clinical significance, biological functions and underlying mechanisms of miR-30d deregulation in PCa. Methods: Involvement of miR-30d deregulation in malignant phenotypes of PCa was demonstrated by clinical sample evaluation, and in vitro and in vivo experiments. The mechanisms underlying its regulatory effect on tumor angiogenesis were determined. Results: miR-30d over-expression was observed in both PCa cells and clinical specimens. High-miR-30d was distinctly associated with high pre-operative PSA and Gleason score, advanced clinical and pathological stages, positive metastasis and biochemical recurrence (BCR), and reduced overall survival of PCa patients. Through gainand loss-of-function experiments, we found that miR-30d promoted PCa cell proliferation, migration, invasion, and capillary tube formation of endothelial cells, as well as in vivo tumor growth and angiogenesis in a mouse model. Simulation of myosin phosphatase targeting subunit 1 (MYPT1), acting as a direct target of miR-30d, antagonized the effects induced by miR-30d up-regulation in PCa cells. Notably, miR-30d/MYPT1 combination was identified as an independent factor to predict BCR of PCa patients. Furthermore, miR-30d exerted its pro-angiogenesis function, at least in part, by inhibiting MYPT1, which in turn, increased phosphorylation levels of c-JUN and activated VEGFAinduced signaling cascade in endothelial cells. Conclusions: miR-30d and/or its target gene MYPT1 may serve as novel prognostic markers of PCa. miR-30d promotes tumor angiogenesis of PCa through MYPT1/c-JUN/VEGFA pathway.

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