PC 10. miR-143 decreases prostate cancer cells proliferation and migration and enhances their sensitivity to docetaxel through suppression of KRAS
Prostate Cancer

PC 10. miR-143 decreases prostate cancer cells proliferation and migration and enhances their sensitivity to docetaxel through suppression of KRAS

Bin Xu1, Xiaobing Niu1, Xiangxiang Zhang1, Jun Tao1, Deyao Wu1, Zidun Wang1, Pengchao Li1, Wei Zhang1, Hongfei Wu1, Ninghan Feng1, Zengjun Wang1, Lixin Hua1, Xinru Wang2

1Laboratory of Reproductive Medicine, Department of Urology, First Affiliated Hospital of Nanjing Medical University, 300 Guangzhou Road, Nanjing 210029, China; 2Laboratory of Reproductive Medicine, Institute of Toxicology, Nanjing Medical University, Nanjing 210029, China


MicroRNAs have been implicated in regulating diverse cellular pathways. Emerging evidence indicates that miR-143 plays causal roles in cancer tumorigenesis as a tumor suppress gene; however, its role in prostate cancer tumorigenesis remains largely unknown. The aims of this study were to verify the effect of miR-143 on proliferation and migration abilities of prostate cancer cells. The expression level of miR-143 and its target gene KRAS were measured by realtime PCR and western blotting, respectively. Effects of miR-143 in cell proliferation, migration and chemosensitivity were evaluated by MTT assay, FACS cell cycle analysis, colony formation assay, and transwell migratory assay. Our results revealed an inverse correlation of expression between miR-143 and KRAS protein in prostate cancer samples (Pearson's cor-relation scatter plots: R=–0.707, P=0.05). Moreover, over-expression of miR-143 in prostate cancer cells sup-pressed their proliferation and migration and increased their sensitivity to docetaxel by targeting EGFR/ RAS/MAPK pathway. These findings suggest that miR-143 plays an important role in prostate cancer proliferation, migration and chemosensitivity by suppressing KRAS and subsequent inactivation of MAPK pathway, which provides a potential development of a new approach for the treat- ment of prostate cancer.

Key words

miR-143; Prostate cancer; KRAS; MAPK; Chemosensitivity

DOI: 10.3978/j.issn.2223-4683.2012.s171

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