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Proximity-dependent Mapping of the Androgen Receptor Identifies Kruppel-like Factor 4 as a Functional Partner

机译:雄激素受体的邻近依赖性映射鉴定Kruppel样因子4作为官能伴侣

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摘要

Prostate cancer (PCa) is the most frequently diagnosed cancer in men and the third cause of cancer mortality. PCa initiation and growth are driven by the androgen receptor (AR). The AR is activated by androgens such as testosterone and controls prostatic cell proliferation and survival. Here, we report an AR signaling network generated using BioID proximity labeling proteomics in androgen-dependent LAPC4 cells. We identified 31 AR-associated proteins in nonstimulated cells. Strikingly, the AR signaling network increased to 182 and 200 proteins, upon 24 h or 72 h of androgenic stimulation, respectively, for a total of 267 nonredundant AR-associated candidates. Among the latter group, we identified 213 proteins that were not previously reported in databases. Many of these new AR-associated proteins are involved in DNA metabolism, RNA processing, and RNA polymerase II transcription. Moreover, we identified 44 transcription factors, including the Kru¨ppel-like factor 4 (KLF4), which were found interacting in androgen-stimulated cells. Interestingly, KLF4 repressed the well-characterized AR-dependent transcription of the KLK3 (PSA) gene; AR and KLF4 also colocalized genome-wide. Taken together, our data report an expanded high-confidence proximity network for AR, which will be instrumental to further dissect the molecular mechanisms underlying androgen signaling in PCa cells.
机译:前列腺癌(PCA)是男性最常诊断的癌症和癌症死亡率的第三种原因。 PCA引发和生长由雄激素受体(AR)驱动。 AR由诸如睾酮等雄激素激活,并控制前列腺细胞增殖和存活。在这里,我们报告使用在雄激素依赖性LAPC4细胞中使用的BioID接近标记蛋白质组学产生的AR信号网络。我们在非刺激细胞中鉴定了31个AR相关蛋白质。尖锐的是,AR信号通信网络分别增加到182和200蛋白,分别在24小时或72小时的雄激素刺激后,总共267个非重现的AR相关候选者。在后一组中,我们鉴定了213个蛋白,这些蛋白质未在数据库中报告。这些新的AR相关蛋白中的许多涉及DNA代谢,RNA处理和RNA聚合酶II转录。此外,我们鉴定了44种转录因子,包括Kru¨ppel样因子4(KLF4),其被发现在雄激素刺激的细胞中相互作用。有趣的是,KLF4压抑了KLK3(PSA)基因的良好表征的AR依赖性转录; AR和KLF4也分裂了基因组宽。我们的数据一起报告AR的扩展高信N信心接近网络,这将有助于进一步疏松PCA细胞中雄激素信号引起的分子机制。

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