MicroRNA-34a regulates WNT/TCF7 signaling and inhibits bone metastasis in Ras-activated prostate cancer

Abstract

Aberrant activation of Ras and WNT signaling are key events that have been shown to be up-regulated in prostate cancer that has metastasized to the bone. However, the regulatory mechanism of combinatorial Ras and WNT signaling in advanced prostate cancer is still unclear. TCF7, a WNT signaling-related gene, has been implicated as a critical factor in bone metastasis, and here we show that TCF7 is a direct target of miR-34a. In samples of prostate cancer patients, miR-34a levels are inversely correlated with TCF7 expression and a WNT dependent gene signature. Ectopic miR-34a expression inhibited bone metastasis and reduced cancer cell proliferation in a Ras-dependent xenograft model. We demonstrate that miR- 34a can directly interfere with the gene expression of the anti-proliferative BIRC5, by targeting BIRC5 3'UTR. Importantly, BIRC5 overexpression was sufficient to reconstitute anti-apoptotic signaling in cells expressing high levels of miR-34a. In prostate cancer patients, we found that BIRC5 levels were positively correlated with a Ras signaling signature expression. Our data show that the bone metastasis and anti-apoptotic effects found in Ras signaling-activated prostate cancer cells require miR-34a deficiency, which in turn aids in cell survival by activating the WNT and antiapoptotic signaling pathways thereby inducing TCF7 and BIRC5 expressions.

Description

Keywords

Birc5, Bone metastasis, Mir-34a, Prostate cancer, Tcf7, Animals, Blotting, western, Bone neoplasms, Cell line, tumor, Gene expression regulation, neoplastic, Heterografts, Humans, Immunohistochemistry, Inhibitor of apoptosis proteins, Male, Mice, Mice, nude, Micrornas, Neoplasm invasiveness, Polymerase chain reaction, Prostatic neoplasms, Ras proteins, Signal transduction, T cell transcription factor 1, Transfection, Wnt proteins, Microrna 34a, Ras protein, Transcription factor 7 like 1, Wnt protein, Birc5 protein, human, Inhibitor of apoptosis protein, Microrna, Mirn34 microrna, human, Tcf7 protein, human, Transcription factor 7, 3' untranslated region, Advanced cancer, Animal cell, Animal experiment, Apoptosis, Article, Birc5 gene, Cancer patient, Cancer prognosis, Cell proliferation, Cell survival, Controlled study, Gene, Gene expression, Human, Human cell, Mouse, Nonhuman, Phenotype, Ras activated prostate cancer, Regulatory mechanism, Tumor xenograft, Wnt signaling pathway, Animal, Bone tumor, Gene expression regulation, Genetic transfection, Genetics, Metabolism, Nude mouse, Pathology, Physiology, Prostate tumor, Secondary, Tumor cell line, Tumor invasion, Western blotting, Xenograft

Citation

Endorsement

Review

Supplemented By

Referenced By