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STAT3 and HIF1α cooperatively activate HIF1 target genes in MDA-MB-231 and RCC4 cells

机译:STAT3和HIF1α协同激活MDA-MB-231和RCC4细胞中的HIF1靶基因

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Solid tumors often exhibit simultaneously inflammatory and hypoxic microenvironments. The 鈥榮ignal transducer and activator of transcription-3鈥?(STAT3)-mediated inflammatory response and the hypoxia-inducible factor (HIF)-mediated hypoxia response have been independently shown to promote tumorigenesis through the activation of HIF or STAT3 target genes and to be indicative of a poor prognosis in a variety of tumors. We report here for the first time that STAT3 is involved in the HIF1, but not HIF2-mediated hypoxic transcriptional response. We show that inhibiting STAT3 activity in MDA-MB-231 and RCC4 cells by a STAT3 inhibitor or STAT3 small interfering RNA significantly reduces the levels of HIF1, but not HIF2 target genes in spite of normal levels of hypoxia-inducible transcription factor 1伪 (HIF1伪) and HIF2伪 protein. Mechanistically, STAT3 activates HIF1 target genes by binding to HIF1 target gene promoters, interacting with HIF1伪 protein and recruiting coactivators CREB binding protein (CBP) and p300, and RNA polymerase II (Pol II) to form enhanceosome complexes that contain HIF1伪, STAT3, CBP, p300 and RNA Pol II on HIF1 target gene promoters. Functionally, the effect of STAT3 knockdown on proliferation, motility and clonogenic survival of tumor cells in vitro is phenocopied by HIF1伪 knockdown in hypoxic cells, whereas STAT3 knockdown in normoxic cells also reduces cell proliferation, motility and clonogenic survival. This indicates that STAT3 works with HIF1 to activate HIF1 target genes and to drive HIF1-depedent tumorigenesis under hypoxic conditions, but also has HIF-independent activity in normoxic and hypoxic cells. Identifying the role of STAT3 in the hypoxia response provides further data supporting the effectiveness of STAT3 inhibitors in solid tumor treatment owing to their usefulness in inhibiting both the STAT3 and HIF1 pro-tumorigenic signaling pathways in some cancer types.
机译:实体瘤通常同时表现出炎症性和缺氧性微环境。已经独立显示“转录3的荣格转导和激活剂”(STAT3)介导的炎症反应和缺氧诱导因子(HIF)介导的缺氧反应可通过激活HIF或STAT3靶基因来促进肿瘤发生。可以预示各种肿瘤的预后不良。我们第一次在这里报告STAT3参与HIF1,但不是HIF2介导的低氧转录反应。我们显示,尽管低氧诱导型转录因子1α处于正常水平,但通过STAT3抑制剂或STAT3小干扰RNA抑制MDA-MB-231和RCC4细胞中的STAT3活性可显着降低HIF1的水平,但不能降低HIF2靶基因的水平。 HIF1α)和HIF2α蛋白。从机理上讲,STAT3通过与HIF1靶基因启动子结合,与HIF1α蛋白质相互作用并募集辅助激活剂CREB结合蛋白(CBP)和p300和RNA聚合酶II(Pol II)来激活包含HIF1α,STAT3的增强体复合物,从而激活HIF1靶基因。 ,CBP,p300和HIF1靶基因启动子上的RNA Pol II。从功能上讲,STAT3敲低对体外肿瘤细胞增殖,运动性和克隆形成存活的影响是通过低氧细胞中的HIF1α敲低表现出来的,而常氧细胞中的STAT3敲除也会降低细胞增殖,运动性和克隆形成存活。这表明STAT3与HIF1共同激活缺氧条件下的HIF1靶基因并驱动HIF1依赖的肿瘤发生,但在常氧和缺氧细胞中也具有非HIF活性。鉴定STAT3在缺氧反应中的作用提供了进一步的数据,支持了STAT3抑制剂在实体瘤治疗中的有效性,因为它们在某些类型的癌症中可抑制STAT3和HIF1促癌基因信号通路。

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