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Coordinated AR and microRNA regulation in prostate cancer

机译:在前列腺癌中协调AR和MicroRNA调节

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摘要

The androgen receptor (AR) remains a key driver of prostate cancer (PCa) progression, even in the advanced castrate-resistant stage, where testicular androgens are absent. It is therefore of critical importance to understand the molecular mechanisms governing its activity and regulation during prostate tumourigenesis. MicroRNAs (miRs) are small ∼22 nt non-coding RNAs that regulate target gene, often through association with 3′ untranslated regions (3′UTRs) of transcripts. They display dysregulation during cancer progression, can function as oncogenes or tumour suppressors, and are increasingly recognised as targets or regulators of hormonal action. Thus, understanding factors which modulate miRs synthesis is essential. There is increasing evidence for complex and dynamic bi-directional cross-talk between the multi-step miR biogenesis cascade and the AR signalling axis in PCa. This review summarises the wealth of mechanisms by which miRs are regulated by AR, and conversely, how miRs impact AR's transcriptional activity, including that of AR splice variants. In addition, we assess the implications of the convergence of these pathways on the clinical employment of miRs as PCa biomarkers and therapeutic targets.
机译:雄激素受体(AR)仍然是前列腺癌(PCA)进展的关键驱动器,即使在先进的抗阉割阶段,睾丸性雌激素也不存在。因此,了解在前列腺肿瘤内治疗其活性和调节的分子机制至关重要。 MicroRNAS(MIRS)是小〜22nt非编码RNA,其调节靶基因,通常通过与3'未转换的区域(3'UTRS)的转录物相关联。它们在癌症进展期间显示失调,可以用作血管生成或肿瘤抑制剂,并且越来越被认为是荷尔蒙行为的目标或调节因子。因此,了解调节mirs合成的因素是必不可少的。在PCA中的多步强生物生物生物生成级联和AR信号轴之间的复杂和动态双向串扰的复杂和动态双向串扰的证据越来越多。本综述总结了MIR由AR调节的机制的财富,并相反,MIRS如何影响AR的转录活动,包括AR剪接变体。此外,我们还评估这些途径收敛性对MIR作为PCA生物标志物和治疗靶标的临床就业的影响。

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