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首页> 外文期刊>The Journal of biological chemistry >Discovery Proteomics Identifies a Molecular Link between the Coatomer Protein Complex I and Androgen Receptor-dependent Transcription *
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Discovery Proteomics Identifies a Molecular Link between the Coatomer Protein Complex I and Androgen Receptor-dependent Transcription *

机译:发现蛋白质组学识别Coatomer蛋白质复合物I和雄激素受体依赖性转录 * / XREF>之间的分子链

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摘要

Aberrant androgen receptor (AR)-dependent transcription is a hallmark of human prostate cancers. At the molecular level, ligand-mediated AR activation is coordinated through spatial and temporal protein-protein interactions involving AR-interacting proteins, which we designate the “AR-interactome.” Despite many years of research, the ligand-sensitive protein complexes involved in ligand-mediated AR activation in prostate tumor cells have not been clearly defined. Here, we describe the development, characterization, and utilization of a novel human LNCaP prostate tumor cell line, N-AR, which stably expresses wild-type AR tagged at its N terminus with the streptavidin-binding peptide epitope (streptavidin-binding peptide-tagged wild-type androgen receptor; SBP-AR). A bioanalytical workflow involving streptavidin chromatography and label-free quantitative mass spectrometry was used to identify SBP-AR and associated ligand-sensitive cytosolic proteins/protein complexes linked to AR activation in prostate tumor cells. Functional studies verified that ligand-sensitive proteins identified in the proteomic screen encoded modulators of AR-mediated transcription, suggesting that these novel proteins were putative SBP-AR-interacting proteins in N-AR cells. This was supported by biochemical associations between recombinant SBP-AR and the ligand-sensitive coatomer protein complex I (COPI) retrograde trafficking complex in vitro . Extensive biochemical and molecular experiments showed that the COPI retrograde complex regulates ligand-mediated AR transcriptional activation, which correlated with the mobilization of the Golgi-localized ARA160 coactivator to the nuclear compartment of prostate tumor cells. Collectively, this study provides a bioanalytical strategy to validate the AR-interactome and define novel AR-interacting proteins involved in ligand-mediated AR activation in prostate tumor cells. Moreover, we describe a cellular system to study how compartment-specific AR-interacting proteins influence AR activation and contribute to aberrant AR-dependent transcription that underlies the majority of human prostate cancers.
机译:异常雄激素受体(AR) - 依赖性转录是人类前列腺癌的标志。在分子水平下,通过涉及Ar相互作用蛋白的空间和时间蛋白质 - 蛋白质相互作用,配体介导的AR活化是协调的,所述蛋白质 - 蛋白质 - 蛋白质 - 蛋白质 - 蛋白质 - 蛋白质 - 蛋白质相互作用,我们指定“Ar-exerame”。尽管有多年的研究,但在前列腺肿瘤细胞中参与配体介导的AR激活的配体敏感蛋白质复合物尚未明确定义。在这里,我们描述了一种新型人LNCAP前列腺肿瘤细胞系,N-Ar的开发,表征和利用,其稳定地表达在其N末端的野生型Ar与链霉抗生物素蛋白结合肽表位(链霉抗生物素蛋白结合肽 - 标记野生型雄激素受体; SBP-AR)。使用涉及链霉蛋白色谱和无标记定量质谱法的生物分析工作流程用于鉴定与前列腺肿瘤细胞中的AR激活连接的SBP-AR和相关的配体敏感性蛋白质/蛋白质复合物。功能性研究验证了在Ar介导的转录的蛋白质组学筛网编码调节剂中鉴定的配体敏感蛋白,表明这些新蛋白质在N-Ar细胞中占SBP-Ar相互作用蛋白。这是通过重组SBP-Ar和配体敏感性涂层蛋白综合体综合体(COPI)逆行贩运复合物体外复合物之间的生物化学缔合的生物化学缔合。广泛的生化和分子实验表明,COPI逆行复合物调节配体介导的AR转录激活,其与调动高尔基局部化ARA160共觉器与前列腺肿瘤细胞的核隔室相关联。集体,该研究提供生物分析策略,用于验证Ar-互蛋白,并定义参与配体介导的AR激活的新型Ar相互作用蛋白在前列腺肿瘤细胞中。此外,我们描述了一种研究舱室特异性Ar相互作用蛋白如何影响AR激活的细胞系统,并有助于依赖于多种人道前列腺癌的转录。

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