Abstract

Malignant pleural mesothelioma (MPM) continues to increase in incidence worldwide and has limited therapeutic options. MPM displays characteristic changes in gene expression, including noncoding RNAs such as microRNAs, which have potential therapeutic relevance. One such miRNA is miR-137, a tumor suppressor whose promoter region is frequently methylated in other cancers and lies in in a commonly deleted chromosomal region in MPM (1p21-23). A potential role for miR-137 has yet to be investigated in MPM. One known target of miR-137 is YB-1, a multifunctional protein often up-regulated in other aggressive cancers, where elevated YB-1 levels are linked to poor clinical outcomes. This study investigates the causes of miR-137 suppression, the relationship between miR-137 and YB-1, one of its targets, as well as their roles in MPM cell growth and malignant behavior. Basal expression of miR-137 and YB-1 was determined in 13 MPM cell lines by RT-qPCR and immunoblotting. Cells were treated with 5’Aza-cytidine and RT-qPCR was conducted to link methylation with miR-137 suppression. Copy number variation (CNV) was investigated by ddPCR. Cells were transfected with miR-137 mimic and subsequent YB-1 expression was investigated using RT-qPCR. Proliferation, colony formation and wound-healing assays were conducted after transfection with miR-137 mimics or YB-1-specific siRNAs. miR-137 was absent in 4 MPM cell lines (p<0.01) and was up-regulated in response to 5’Aza-cytidine treatment in these lines, as well as other lines with low basal expression. Copy-number loss was evident in 5 cell lines and gain was present in 2. Increasing levels of miR-137 generally inhibited MPM cell migration, proliferation and colony formation. miR-137 mimics significantly down-regulated YB-1 expression, while YB-1 protein was overexpressed in the majority of MPM cell lines, compared to MeT-5A. YB-1 knock-down resulted in dose-dependent growth inhibition over 120 hours, reduced colony formation and also decreased cell migration. Effects were more pronounced in those cell lines showing high YB-1 protein levels. Our results show that methylation and CNV are likely to play a role in miR-137 down-regulation in MPM and that miR-137 acts as a tumor suppressor in MPM through at least in part the down-regulation of YB-1. We also demonstrated that YB-1 is commonly overexpressed and plays a role in proliferation and migration. These results imply a direct relationship between miR-137 and YB-1 expression, a biological interaction that may prove a useful target in developing future therapeutic approaches in MPM.

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