首页> 美国卫生研究院文献>Aging (Albany NY) >MYSM1-AR complex-mediated repression of Akt/c-Raf/GSK-3β signaling impedes castration-resistant prostate cancer growth
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MYSM1-AR complex-mediated repression of Akt/c-Raf/GSK-3β signaling impedes castration-resistant prostate cancer growth

机译:MYSM1-AR复合物介导的Akt / c-Raf /GSK-3β信号转导抑制去势抵抗性前列腺癌的生长

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摘要

Epigenetic alterations that lead to dysregulated gene expression in the progression of castration-resistant prostate cancer (CRPC) remain elusive. Here, we investigated the role of histone deubiquitinase MYSM1 in the pathogenesis of prostate cancer (PCa). Tissues and public datasets of PCa were evaluated for MYSM1 levels. We explored the effects of MYSM1 on cell proliferation, senescence and viability both and . Integrative database analyses and co-immunoprecipitation assays were performed to elucidate genomic association of MYSM1 and MYSM1-involved biological interaction network in PCa. We observed that MYSM1 were downregulated in CRPC compared to localized prostate tumors. Knockdown of MYSM1 promoted cell proliferation and suppressed senescence of CRPC cells under condition of androgen ablation. MYSM1 downregulation enhanced the tumorigenic ability in nude mice. Integrative bioinformatic analyses of the significantly associated genes with MYSM1 revealed MYSM1-correlated pathways, providing substantial clues as to the role of MYSM1 in PCa. MYSM1 was able to bind to androgen receptor instead of increasing its expression and knockdown of MYSM1 resulted in activation of Akt/c-Raf/GSK-3β signaling. Together, our findings indicate that MYSM1 is pivotal in CRPC pathogenesis and may be established as a potential target for future treatment.
机译:导致去势抵抗性前列腺癌(CRPC)进展中导致基因表达失调的表观遗传改变仍然难以捉摸。在这里,我们调查了组蛋白去泛素酶MYSM1在前列腺癌(PCa)发病机理中的作用。对PCa的组织和公共数据集评估了MYSM1水平。我们探索了MYSM1对细胞增殖,衰老和活力的影响。进行了综合数据库分析和免疫共沉淀测定,以阐明PCa中MYSM1和MYSM1参与的生物相互作用网络的基因组关联。我们观察到与局部前列腺肿瘤相比,MYSM1在CRPC中被下调。在雄激素消融条件下,敲低MYSM1促进细胞增殖并抑制CRPC细胞的衰老。 MYSM1下调增强了裸鼠的致瘤能力。对与MYSM1显着相关的基因的综合生物信息学分析揭示了MYSM1相关的途径,为MYSM1在PCa中的作用提供了实质性线索。 MYSM1能够结合雄激素受体而不是增加其表达,而敲除MYSM1则导致Akt / c-Raf /GSK-3β信号转导。总之,我们的发现表明MYSM1在CRPC发病机理中至关重要,并可能被确立为未来治疗的潜在靶标。

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