Catenin is regulated by USP9x and mediates resistance to TRAIL-induced apoptosis in breast cancer

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Abstract

To investigate the regulatory mechanisms of decoy receptor expression in TRAIL-resistant breast cancer MCF-7 cells, cytotoxicity and apoptosis assays were applied to examine sensitivity to TRAIL in breast cancer cells. Immunofluorescence and immunoprecipitation were used to detect the co-localization and interaction of USP9x and catenin. Luciferase assay was used to examine activity of the DcR1/DcR2/OPG reporter. Overexpression/silencing of catenin was performed to confirm catenin mediated transcription of the decoy receptors. Additionally, silencing of USP9x was performed to prove that USP9X stabilizes catenin and mediates TRAIL-resistance. It was found that USP9x interacted with catenin and inhibited the degradation of catenin through the deubiquitination of catenin. Luciferase reporter assays showed induction of DcR1/DcR2/OPG reporter activity observed upon co-transfection of catenin and Tcf-4. The overexpression/silencing of catenin further confirmed the role of catenin in the regulation of transcription of the decoy receptors. Silencing of USP9x directly evidenced that USP9x affected the protein expression level of catenin, the transcription level of the decoy receptors, and reversed TRAIL-resistance of MCF-7 cells. In conclusion, USP9x interacted with and stabilized catenin through deubiquitination to mediate transcription of the decoy receptors in breast cancer cells. Our results offer new insights into the mechanisms of resistance to TRAIL, and USP9x could potentially be a therapeutic target for TRAILresistant breast cancers.

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Ouyang, W., Zhang, S., Yang, B., Yang, C., Zhang, J., Zhou, F., & Xie, C. (2016). Catenin is regulated by USP9x and mediates resistance to TRAIL-induced apoptosis in breast cancer. Oncology Reports, 35(2), 717–724. https://doi.org/10.3892/or.2015.4463

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