首页> 外文期刊>Signal transduction and targeted therapy. >Context-dependent AMPK activation distinctly regulates TAp73 stability and transcriptional activity
【24h】

Context-dependent AMPK activation distinctly regulates TAp73 stability and transcriptional activity

机译:上下文相关的AMPK激活明显调节TAp73的稳定性和转录活性

获取原文
           

摘要

TAp73, the homologue of the tumour suppressor p53, has dual roles in tumourigenesis: both as a tumour suppressor and as a promoter of tumour growth. We have recently shown that hypoxia, a condition prevalent in tumours, results in the stabilisation of TAp73 through a mechanism involving HIF-1α-mediated repression of the E3 ligase Siah1 . Elevated TAp73 in turn regulates the angiogenic transcriptional programme, exemplified by vegf-A activation, thereby promoting angiogenesis and tumour growth. To further understand hypoxia-mediated TAp73 regulation, we have focused on the Adenosine monophosphate (AMP)-dependent protein kinase (AMPK) signalling pathway induced by hypoxia. We show that hypoxia-mediated AMPK activation is required for efficient TAp73 stabilisation, through multiple means by using AMPK-deficient cells or inhibiting its activity and expression. Conversely, direct AMPK activation using its activator AICAR is also sufficient to induce TAp73 stabilisation but this is independent of putative AMPK phosphorylation sites on TAp73, HIF-1α activation, and transcriptional repression of Siah1 . Furthermore, while vegf-A up-regulation upon hypoxia requires AMPK, direct activation of AMPK by AICAR does not activate vegf-A . Consistently, supernatant from cells exposed to hypoxia, but not AICAR, was able to induce tube formation in HUVECs. These data therefore highlight that the processes of TAp73 stabilisation and transcriptional activation of angiogenic target genes by AMPK activation can be decoupled. Collectively, these results suggest that the context of AMPK activation determines the effect on TAp73, and proposes a model in which hypoxia-induced TAp73 stabilisation occurs by parallel pathways converging to mediate its transactivation potential.
机译:TAp73,抑癌基因p53的同源物,在肿瘤发生中起双重作用:既是抑癌基因,又是肿瘤生长的促进剂。我们最近发现,缺氧是一种普遍存在于肿瘤中的疾病,通过涉及HIF-1α介导的E3连接酶Siah1抑制的机制导致TAp73稳定。升高的TAp73反过来调节血管生成的转录程序,例如vegf-A激活,从而促进血管生成和肿瘤生长。为了进一步了解缺氧介导的TAp73调控,我们集中于缺氧诱导的单磷酸腺苷(AMP)依赖性蛋白激酶(AMPK)信号传导途径。我们表明缺氧介导的AMPK激活是有效的TAp73稳定所必需的,通过使用AMPK缺陷的细胞或抑制其活性和表达的多种方法。相反,使用其激活剂AICAR进行直接AMPK激活也足以诱导TAp73稳定,但这与TAp73上假定的AMPK磷酸化位点,HIF-1α激活和Siah1的转录抑制无关。此外,尽管缺氧时vegf-A上调需要AMPK,但AICAR直接激活AMPK不会激活vegf-A。一致地,来自暴露于缺氧而不是AICAR的细胞的上清液能够诱导HUVEC中的管形成。因此,这些数据突出表明,可以使TAp73稳定化和通过AMPK激活血管生成靶基因转录激活的过程脱钩。这些结果共同表明,AMPK激活的环境决定了对TAp73的作用,并提出了一个模型,在该模型中,低氧诱导的TAp73稳定通过平行途径汇聚,以介导其反式激活潜能。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号