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首页> 外文期刊>Nucleic Acids Research >Synthetic transactivation screening reveals ETV4 as broad coactivator of hypoxia-inducible factor signaling
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Synthetic transactivation screening reveals ETV4 as broad coactivator of hypoxia-inducible factor signaling

机译:合成反式激活筛选显示ETV4是缺氧诱导因子信号传导的广泛共激活因子

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The human prolyl-4-hydroxylase domain (PHD) proteins 1-3 are known as cellular oxygen sensors, acting via the degradation of hypoxia-inducible factor (HIF) alpha-subunits. PHD2 and PHD3 genes are inducible by HIFs themselves, suggesting a negative feedback loop that involves PHD abundance. To identify novel regulators of the PHD2 gene, an expression array of 704 transcription factors was screened by a method that allows distinguishing between HIF-dependent and HIF-independent promoter regulation. Among others, the E-twenty six transcription factor ETS translocation variant 4 (ETV4) was found to contribute to PHD2 gene expression particularly under hypoxic conditions. Mechanistically, complex formation between ETV4 and HIF-1/2 alpha was observed by mammalian two-hybrid and fluorescence resonance energy transfer analysis. HIF-1 alpha domain mapping, CITED2 overexpression and factor inhibiting HIF depletion experiments provided evidence for cooperation between HIF-1 alpha and p300/CBP in ETV4 binding. Chromatin immunoprecipitation confirmed ETV4 and HIF-1 alpha corecruitment to the PHD2 promoter. Of 608 hypoxically induced transcripts found by genome-wide expression profiling, 7.7% required ETV4 for efficient hypoxic induction, suggesting a broad role of ETV4 in hypoxic gene regulation. Endogenous ETV4 highly correlated with PHD2, HIF-1/2 alpha and several established markers of tissue hypoxia in 282 human breast cancer tissue samples, corroborating a functional interplay between the ETV4 and HIF pathways.
机译:人脯氨酰-4-羟化酶结构域(PHD)蛋白1-3被称为细胞氧传感器,通过缺氧诱导因子(HIF)α亚基的降解而发挥作用。 HIF本身可诱导PHD2和PHD3基因,提示涉及PHD丰度的负反馈回路。为了鉴定PHD2基因的新型调控因子,通过允许区分HIF依赖性和HIF依赖性启动子调控的方法筛选了704个转录因子的表达阵列。其中,特别是在低氧条件下,发现了E-26转录因子ETS易位变体4(ETV4)有助于PHD2基因表达。从机理上讲,通过哺乳动物双杂交和荧光共振能量转移分析观察到了ETV4和HIF-1 / 2α之间的复合物形成。 HIF-1 alpha结构域定位,CITED2过表达和抑制HIF耗竭的因子实验为HIF-1 alpha和p300 / CBP在ETV4结合中的协同作用提供了证据。染色质免疫沉淀证实ETV4和HIF-1 alpha招募了PHD2启动子。在全基因组表达谱分析发现的608种低氧诱导的转录本中,7.7%需要ETV4才能有效地进行低氧诱导,这表明ETV4在低氧基因调控中的广泛作用。内源性ETV4与PHD2,HIF-1 / 2α和282个人类乳腺癌组织样本中组织缺氧的几个已建立标记高度相关,从而证实了ETV4和HIF途径之间的功能相互作用。

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