Laboratory of Biochemistry, Faculty of Medicine, University of Thessaly, Larissa, Greece.
Laboratory of Biochemistry, Faculty of Medicine, University of Thessaly, Larissa, Greece; Gerald Bronfman Department of Oncology, Faculty of Medicine, McGill University, Montreal, Canada.
Arch Biochem Biophys. 2019 Mar 30;664:174-182. doi: 10.1016/j.abb.2019.02.007. Epub 2019 Feb 15.
Hypoxia-inducible factors (HIF) are master regulators of the response to hypoxia. Although several kinases are known to modify their oxygen sensitive HIF-α subunits or affect indirectly their function, little is known about the role of phosphatases in HIF control. To address this issue, a library containing siRNAs for the 25 known catalytic subunits of human phosphatases was used to screen for their effect on HIF transcriptional activity in HeLa cells. Serine-threonine phosphatase PPP3CA (calcineurin A, isoform a) was identified as the strongest candidate for a negative regulator of HIF activity. Indeed, independent silencing of PPP3CA expression stimulated HIF transcriptional activity under hypoxia, without increasing the protein levels of HIF-1α or HIF-2α. Overexpression of a constitutively active PPP3CA form, but not its catalytically inactive counterpart, inhibited HIF activity and expression of HIF target genes but did not affect HIF-1α or HIF-2α expression. These results were phenocopied by treatment with the ionophore ionomycin, that activates endogenous PPP3CA. The effect of ionomycin was mediated by PPP3CA as it was largely abolished by PPP3CA silencing. Furthermore, ionomycin enhanced the down-regulation of HIF activity by wild-type PPP3CA overexpression. Overall, our results suggest the involvement of PPP3CA in fine-tuning the HIF-dependent transcriptional response to hypoxia.
缺氧诱导因子 (HIF) 是对缺氧反应的主要调节因子。尽管已经知道几种激酶可以修饰其氧敏感的 HIF-α 亚基或间接地影响其功能,但关于磷酸酶在 HIF 控制中的作用知之甚少。为了解决这个问题,使用包含人磷酸酶 25 种已知催化亚基的 siRNA 文库筛选它们对 HeLa 细胞中 HIF 转录活性的影响。丝氨酸-苏氨酸磷酸酶 PPP3CA(钙调神经磷酸酶 A,异构体 a)被鉴定为 HIF 活性的负调节剂的最强候选物。事实上,PPP3CA 表达的独立沉默在缺氧下刺激了 HIF 转录活性,而不会增加 HIF-1α 或 HIF-2α 的蛋白水平。组成型活性 PPP3CA 形式的过表达,但不是其无催化活性的对应物,抑制了 HIF 活性和 HIF 靶基因的表达,但不影响 HIF-1α 或 HIF-2α 的表达。离子载体离子霉素的处理复制了这些结果,离子霉素激活内源性 PPP3CA。离子霉素的作用是由 PPP3CA 介导的,因为它在很大程度上被 PPP3CA 沉默所消除。此外,离子霉素增强了野生型 PPP3CA 过表达对 HIF 活性的下调。总的来说,我们的结果表明 PPP3CA 参与了精细调节缺氧诱导的 HIF 依赖性转录反应。