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Amplitude modulation of androgen signaling by c-MYC

机译:c-MYC对雄激素信号的振幅调制

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摘要

Androgen-stimulated growth of the molecular apocrine breast cancer subtype is mediated by an androgen receptor (AR)-regulated transcriptional program. However, the molecular details of this AR-centered regulatory network and the roles of other transcription factors that cooperate with AR in the network remain elusive. Here we report a positive feed-forward loop that enhances breast cancer growth involving AR, AR coregulators, and downstream target genes. In the absence of an androgen signal, TCF7L2 interacts with FOXA1 at AR-binding sites and represses the basal expression of AR target genes, including MYC. Direct AR regulation of MYC cooperates with AR-mediated activation of HER2/HER3 signaling. HER2/HER3 signaling increases the transcriptional activity of MYC through phosphorylation of MAD1, leading to increased levels of MYC/MAX heterodimers. MYC in turn reinforces the transcriptional activation of androgen-responsive genes. These results reveal a novel regulatory network in molecular apocrine breast cancers regulated by androgen and AR in which MYC plays a central role as both a key target and a cooperating transcription factor to drive oncogenic growth.
机译:雄激素刺激的分子顶泌性乳腺癌亚型的生长是由雄激素受体(AR)调控的转录程序介导的。但是,这种以AR为中心的调控网络的分子细节以及在网络中与AR合作的其他转录因子的作用仍然难以捉摸。在这里,我们报告了一个正向前馈回路,该回路会增强涉及AR,AR核心调节剂和下游靶基因的乳腺癌生长。在缺乏雄激素信号的情况下,TCF7L2在AR结合位点与FOXA1相互作用,并抑制AR靶基因(包括MYC)的基础表达。 MYC的直接AR调节与AR介导的HER2 / HER3信号传导的激活协同作用。 HER2 / HER3信号通过MAD1的磷酸化增加MYC的转录活性,从而导致MYC / MAX异二聚体水平升高。 MYC反过来会增强雄激素反应基因的转录激活。这些结果揭示了在由雄激素和AR调节的分子顶泌性乳腺癌中的新型调节网络,其中MYC既是驱动致癌性生长的关键靶标又是协同转录因子的核心作用。

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