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NAR Breakthrough Article: Three-tiered role of the pioneer factor GATA2 in promoting androgen-dependent gene expression in prostate cancer

机译:NAR突破性文章:先锋因子GATA2在促进前列腺癌中雄激素依赖性基因表达中的三层作用

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摘要

In prostate cancer, androgen receptor (AR) binding and androgen-responsive gene expression are defined by hormone-independent binding patterns of the pioneer factors FoxA1 and GATA2. Insufficient evidence of the mechanisms by which GATA2 contributes to this process precludes complete understanding of a key determinant of tissue-specific AR activity. Our observations suggest that GATA2 facilitates androgen-responsive gene expression by three distinct modes of action. By occupying novel binding sites within the AR gene locus, GATA2 positively regulates AR expression before and after androgen stimulation. Additionally, GATA2 engages AR target gene enhancers prior to hormone stimulation, producing an active and accessible chromatin environment via recruitment of the histone acetyltransferase p300. Finally, GATA2 functions in establishing and/or sustaining basal locus looping by recruiting the Mediator subunit MED1 in the absence of androgen. These mechanisms may contribute to the generally positive role of GATA2 in defining AR genome-wide binding patterns that determine androgen-responsive gene expression profiles. We also find that GATA2 and FoxA1 exhibit both independent and codependent co-occupancy of AR target gene enhancers. Identifying these determinants of AR transcriptional activity may provide a foundation for the development of future prostate cancer therapeutics that target pioneer factor function.
机译:在前列腺癌中,先驱因子FoxA1和GATA2的激素非依赖性结合模式定义了雄激素受体(AR)的结合和雄激素响应基因的表达。 GATA2促成此过程的机制的证据不足,因此无法完全了解组织特异性AR活性的关键决定因素。我们的观察结果表明,GATA2通过三种不同的作用方式促进雄激素反应性基因表达。通过占据AR基因位点内的新结合位点,GATA2在雄激素刺激之前和之后正调控AR表达。另外,GATA2在激素刺激之前与AR靶基因增强子结合,通过募集组蛋白乙酰转移酶p300产生一个活跃的染色质环境。最后,在缺乏雄激素的情况下,GATA2通过募集介体MED1亚基MED1来建立和/或维持基础基因座环。这些机制可能有助于GATA2在定义AR范围内的全基因组结合模式(确定雄激素反应性基因表达谱)中发挥积极作用。我们还发现,GATA2和FoxA1展示了AR目标基因增强子的独立和共同依赖性。鉴定AR转录活性的这些决定因素可为开发靶向先锋因子功能的未来前列腺癌疗法提供基础。

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