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AR-V7 在去势抵抗性前列腺癌中表现出非典型的核输入和染色质结合机制。

AR-V7 exhibits non-canonical mechanisms of nuclear import and chromatin engagement in castrate-resistant prostate cancer.

机构信息

Department of Medicine, Weill Cornell Medical College, New York, United States.

Department of Pathology, Weill Cornell Medical College, New York, United States.

出版信息

Elife. 2022 Jul 18;11:e73396. doi: 10.7554/eLife.73396.

Abstract

Expression of the AR splice variant, androgen receptor variant 7 (AR-V7), in prostate cancer is correlated with poor patient survival and resistance to AR targeted therapies and taxanes. Currently, there is no specific inhibitor of AR-V7, while the molecular mechanisms regulating its biological function are not well elucidated. Here, we report that AR-V7 has unique biological features that functionally differentiate it from canonical AR-fl or from the second most prevalent variant, AR-v567. First, AR-V7 exhibits fast nuclear import kinetics via a pathway distinct from the nuclear localization signal dependent importin-α/β pathway used by AR-fl and AR-v567. We also show that the dimerization box domain, known to mediate AR dimerization and transactivation, is required for AR-V7 nuclear import but not for AR-fl. Once in the nucleus, AR-V7 is transcriptionally active, yet exhibits unusually high intranuclear mobility and transient chromatin interactions, unlike the stable chromatin association of liganded AR-fl. The high intranuclear mobility of AR-V7 together with its high transcriptional output, suggest a Hit-and-Run mode of transcription. Our findings reveal unique mechanisms regulating AR-V7 activity, offering the opportunity to develop selective therapeutic interventions.

摘要

雄激素受体剪接变体 7(AR-V7)在前列腺癌中的表达与患者生存不良以及对雄激素受体靶向治疗和紫杉烷类药物的耐药性相关。目前,尚无针对 AR-V7 的特异性抑制剂,而调节其生物学功能的分子机制尚未得到充分阐明。在这里,我们报告 AR-V7 具有独特的生物学特征,使其在功能上与经典的 AR-fl 或第二大常见变体 AR-v567 区分开来。首先,AR-V7 通过不同于依赖核定位信号的核输入蛋白-α/β途径的途径快速进行核内输入,而 AR-fl 和 AR-v567 则使用该途径。我们还表明,二聚体结构域介导 AR 二聚化和反式激活,对于 AR-V7 的核内输入是必需的,但对于 AR-fl 则不是必需的。一旦进入细胞核,AR-V7 就具有转录活性,但与配体结合的 AR-fl 的稳定染色质结合不同,它表现出异常高的核内迁移率和瞬时染色质相互作用。AR-V7 的高核内迁移率与其高转录输出一起,提示其具有“击中-逃离”(Hit-and-Run)转录模式。我们的研究结果揭示了调节 AR-V7 活性的独特机制,为开发选择性治疗干预提供了机会。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/33af/9398446/42a2ce0f47be/elife-73396-fig1.jpg

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