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首页> 外文期刊>Biochimica et Biophysica Acta. Gene Regulatory Mechanisms >Histone demethylase PHF8 regulates hypoxia signaling through HIF1α and H3K4me3
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Histone demethylase PHF8 regulates hypoxia signaling through HIF1α and H3K4me3

机译:组蛋白脱甲基酶PHF8通过HIF1α和H3K4ME3调节缺氧信号传导

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Abstract Hypoxia through transcription factor HIF1α plays a critical role in cancer development. In prostate cancer, HIF1α interplays with androgen receptor (AR) to contribute to the progression of this disease to its lethal form—castration-resistant prostate cancer (CRPC). Hypoxia upregulates several epigenetic factors including histone demethylase KDM3A which is a critical co-factor of HIF1α. However, how histone demethylases regulate hypoxia signaling is not fully understood. Here, we report that histone demethylase PHF8 plays an essential role in hypoxia signaling. Knockdown or knockout of PHF8 by RNAi or CRISPR-Cas9 system reduced the activation of HIF1α and the induction of HIF1α target genes including KDM3A . Mechanistically, PHF8 regulates hypoxia inducible genes mainly through sustaining the level of trimethylated histone 3 lysine 4 (H3K4me3), an active mark in transcriptional regulation. The positive role of PHF8 in hypoxia signaling extended to hypoxia-induced neuroendocrine differentiation (NED), wherein PHF8 cooperates with KDM3A to regulate the expression of NED genes. Moreover, we discovered that the role of PHF8 in hypoxia signaling is associated with the presence of full-length AR in CRPC cells. Collectively, our study identified PHF8 as a novel epigenetic factor in hypoxia signaling, and the underlying regulatory mechanisms likely apply to general cancer development involving HIF1α. Therefore, targeting PHF8 can potentially be a novel therapeutic strategy in cancer therapy.
机译:摘要通过转录因子HIF1α缺氧在癌症发展中发挥着关键作用。在前列腺癌中,HIF1α与雄激素受体(AR)相互作用,以促进这种疾病的进展到其致命形状抗旋转前列腺癌(CRPC)。缺氧上调了几种表现因子,包括组蛋白脱甲基酶KDM3A,其是HIF1α的关键辅因子。然而,组蛋白脱甲基化酶如何调节缺氧信号不完全理解。在这里,我们认为组蛋白脱甲基酶PHF8在缺氧信号传导中起重要作用。 RNAI或CRISPR-CAS9系统的敲低或敲除PHF8减少了HIF1α的激活和包括KDM3A在内的HIF1α靶基因的诱导。机械上,PHF8主要通过维持三甲基化的组蛋白3赖氨酸4(H3K4ME3),转录调节的活性标记的水平来调节缺氧诱导基因。 PHF8在缺氧信号延伸到缺氧诱导的神经内分泌分化(NED)中的阳性作用,其中PHF8与KDM3A配合以调节NED基因的表达。此外,我们发现PHF8在缺氧信号传导中的作用与CRPC细胞中的全长AR存在相关。统称,我们的研究将PHF8确定为缺氧信号传导的新型表观因素,潜在的监管机制可能适用于涉及HIF1α的一般癌症发展。因此,靶向pHF8可能是癌症治疗中的新疗法策略。

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