4.5 Article

LEF1 Targeting EMT in Prostate Cancer Invasion Is Regulated by miR-34a

Journal

MOLECULAR CANCER RESEARCH
Volume 13, Issue 4, Pages 681-688

Publisher

AMER ASSOC CANCER RESEARCH
DOI: 10.1158/1541-7786.MCR-14-0503

Keywords

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Funding

  1. Department of Veterans Affairs, Veterans Health Administration, Office of Research and Development (Biomedical Laboratory Research and Development)
  2. Wuhan Science and Technology Bureau Foundation [201260523172-6]
  3. Hubei Province Key Laboratory of Molecular Imaging open foundation [02.03.2013-59]
  4. DOD PCRP [PC080010, PC11164]
  5. NIH UO1 [1U01CA149556-01]
  6. VA Merit [1I01BX001505-01]
  7. DOD postdoctoral fellowship [PC PC081578]
  8. NYU Molecular Oncology and Immunology Training grant [T32 CA009161]
  9. Chris and Felicia Evensen Prostate Cancer Foundation (PCF) Young Investigator
  10. Patrick C. Walsh Prostate Cancer Research Fund
  11. NIH/NCI prostate SPORE pathology core [5P50CA058236]
  12. Department of Defense Prostate Cancer Research Program, DOD PCRP Prostate Cancer Biorepository Network (PCBN) [W81XWH-10-2-0056, W81XWH-10-2-0046]

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The microRNA-34a (miR-34a), a tumor-suppressive microRNA (miRNA), is implicated in epithelial-mesenchymal transition (EMT) and cancer stem cells. Lymphoid enhancer-binding factor-1 (LEF1) is a key transcription factor in the Wnt signaling pathway, and has been suggested to be involved in regulation of cell proliferation and invasion. Here, the molecular mechanism of miR-34a and LEF1 in cooperatively regulating prostate cancer cell invasion is described. Molecular profiling analysis of miRNA levels in prostate cancer cells revealed a negative correlation between miR-34a and LEF1 expression, and the downregulation of LEF1 by miR-34a was confirmed by luciferase assays. Furthermore, miR-34a specifically repressed LEF1 expression through direct binding to its 3'-untranslated regions (3'-UTR). miR-34a modulated the levels of LEF1 to regulate EMT in prostate cancer cells. Functionally, miR-34a negatively correlated with the migration and invasion of prostate cancer cells through LEF1. An analysis of miR-34a expression levels in matched human tumor and benign tissues demonstrated consistent and statistically significant downregulation of miR-34a in primary prostate cancer specimens. These data strongly suggest that miR-34a/LEF1 regulation of EMT plays an important role in prostate cancer migration and invasion. Implications: The miR-34a-LEF1 axis represents a potential molecular target for novel therapeutic strategies in prostate cancer.

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