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首页> 外文期刊>Molecular & cellular proteomics: MCP >Identification of putative androgen receptor interaction protein modules: cytoskeleton and endosomes modulate androgen receptor signaling in prostate cancer cells.
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Identification of putative androgen receptor interaction protein modules: cytoskeleton and endosomes modulate androgen receptor signaling in prostate cancer cells.

机译:推定的雄激素受体相互作用蛋白模块的鉴定:细胞骨架和内体调节前列腺癌细胞中的雄激素受体信号传导。

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We have developed a novel androgen receptor (AR) expression system in the 293 human embryonic kidney cell line that recapitulates AR biochemical activity as a steroid hormone receptor in prostate cancer cells. We used this system to identify putative AR-binding proteins in the cytosolic and nuclear compartments of mammalian cells using a large scale co-immunoprecipitation strategy coupled to quantitative mass spectrometry. For example, the heat shock 70 and 90 chaperones, which are known regulators of steroid hormone receptor, were identified as AR-binding proteins. AR purification enriched for proteins involved in RNA processing, protein transport, and cytoskeletal organization, suggesting a functional link between AR and these protein modules in mammalian cells. For example, AR purification in the nuclear compartment led to the specific enrichment of alpha-actinin-4, clathrin heavy chain, and serine-threonine protein kinase C delta. Short interfering RNA knockdown studies and co-transcriptional reporter assays revealed that clathrin heavy chain possessed co-activator activity during AR-mediated transcription, whereas alpha-actinin-4 and protein kinase C delta displayed both co-activator and co-repressor activity during AR-mediated transcription that was dependent upon their relative expression levels. Lastly immunohistochemical staining of prostate tissue showed that alpha-actinin-4 levels decreased in the nucleus of high grade cancerous prostate samples, suggesting its possible deregulation in advanced prostate cancers as previously observed in late stage metastatic breast cancers. Taken together, these findings suggest AR binds to specific protein modules in mammalian cells and that these protein modules may provide a molecular framework for interrogating AR function in normal and cancerous prostate epithelial cells.
机译:我们已经在293个人胚胎肾细胞系中开发了一种新型雄激素受体(AR)表达系统,该系统概括了AR生化活性作为前列腺癌细胞中的类固醇激素受体。我们使用该系统使用大规模的免疫共沉淀策略和定量质谱技术来鉴定哺乳动物细胞胞质和核区室中假定的AR结合蛋白。例如,将已知为类固醇激素受体的调节剂的热激70和90分子伴侣鉴定为AR结合蛋白。 AR纯化富集了涉及RNA加工,蛋白质转运和细胞骨架组织的蛋白质,这表明AR与哺乳动物细胞中这些蛋白质模块之间存在功能性联系。例如,核区室中的AR纯化导致α-actinin-4,网格蛋白重链和丝氨酸-苏氨酸蛋白激酶Cδ的特异性富集。简短的RNA干扰研究和共转录报告基因分析表明,网格蛋白重链在AR介导的转录过程中具有共激活子活性,而α-actinin-4和蛋白激酶Cδ在AR期间既显示了共激活子又具有共抑制子的活性。介导的转录取决于它们的相对表达水平。最后,前列腺组织的免疫组织化学染色显示,高级癌性前列腺样品的核中α-actinin-4水平降低,这表明它可能如晚期转移性乳腺癌先前所观察到的在晚期前列腺癌中的失调。综上所述,这些发现表明AR与哺乳动物细胞中的特定蛋白质模块结合,并且这些蛋白质模块可以提供用于询问正常和癌性前列腺上皮细胞中AR功能的分子框架。

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