4.6 Article

miR-888 is an expressed prostatic secretions-derived microRNA that promotes prostate cell growth and migration

期刊

CELL CYCLE
卷 13, 期 2, 页码 227-239

出版社

TAYLOR & FRANCIS INC
DOI: 10.4161/cc.26984

关键词

non-coding RNA; microRNA; miRNA; miR-888; prostate; prostate cancer; expressed prostatic secretions urine; EPS urine

资金

  1. ARRA grant from the National Institute of Health [RO3 CA139547-01]
  2. Eastern Virginia Medical School
  3. National Cancer Institute [R21 CA137704-01]

向作者/读者索取更多资源

microRNAs (miRNAs) are a growing class of small non-coding RNAs that exhibit widespread dysregulation in prostate cancer. We profiled miRNA expression in syngeneic human prostate cancer cell lines that differed in their metastatic potential in order to determine their role in aggressive prostate cancer. miR-888 was the most differentially expressed miRNA observed in human metastatic PC3-ML cells relative to non-invasive PC3-N cells, and its levels were higher in primary prostate tumors from cancer patients, particularly those with seminal vesicle invasion. We also examined a novel miRNA-based biomarker source called expressed prostatic secretions in urine (EPS urine) for miR-888 expression and found that its levels were preferentially elevated in prostate cancer patients with high-grade disease. These expression studies indicated a correlation for miR-888 in disease progression. We next tested how miR-888 regulated cancer-related pathways in vitro using human prostate cancer cell lines. Overexpression of miR-888 increased proliferation and migration, and conversely inhibition of miR-888 activity blocked these processes. miR-888 also increased colony formation in PC3-N and LNCaP cells, supporting an oncogenic role for this miRNA in the prostate. Our data indicates that miR-888 functions to promote prostate cancer progression and can suppress protein levels of the tumor suppressor genes RBL1 and SMAD4. This miRNA holds promise as a diagnostic tool using an innovative prostatic fluid source as well as a therapeutic target for aggressive prostate cancer.

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