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The Response of c-Jun/AP-1 to Chronic Hypoxia Is Hypoxia-Inducible Factor 1α Dependent

机译:c-Jun / AP-1对慢性缺氧的反应是缺氧诱导因子1α依赖的。

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摘要

Hypoxia (low-oxygen tension) is an important physiological stress that influences responses to a wide range of pathologies, including stroke, infarction, and tumorigenesis. Prolonged or chronic hypoxia stimulates expression of the stress-inducible transcription factor gene c-jun and transient activation of protein kinase and phosphatase activities that regulate c-Jun/AP-1 activity. Here we describe evidence obtained by using wild-type and HIF-1α nullizygous mouse embryonic fibroblasts (mEFs) that the induction of c-jun mRNA expression and c-Jun phosphorylation by prolonged hypoxia are completely dependent on the presence of the oxygen-regulated transcription factor hypoxia-inducible factor 1α (HIF-1α). In contrast, transient hypoxia induced c-jun expression in both types of mEFs, showing that the early or rapid induction of this gene is independent of HIF-1α. These findings indicate that the c-jun gene has a biphasic response to hypoxia consisting of inductions that depend on the degree or duration of exposure. To more completely define the relationship between prolonged hypoxia and c-Jun phosphorylation, we used mEFs from mice containing inactivating mutations of critical phosphorylation sites in the c-Jun N-terminal region (serines 63 and 73 or threonines 91 and 93). Exposure of these mEFs to prolonged hypoxia demonstrated an absolute requirement for N-terminal sites for HIF-1α-dependent phosphorylation of c-Jun. Taken together, these findings suggest that c-Jun/AP-1 and HIF-1 cooperate to regulate gene expression in pathophysiological microenvironments.
机译:缺氧(低氧张力)是一种重要的生理压力,影响对多种病理的反应,包括中风,梗死和肿瘤发生。长时间或慢性缺氧会刺激应激诱导转录因子基因c-jun的表达以及调节c-Jun / AP-1活性的蛋白激酶和磷酸酶活性的瞬时激活。在这里,我们描述了使用野生型和HIF-1α无效合子的小鼠胚胎成纤维细胞(mEFs)获得的证据,即长时间缺氧诱导c-jun mRNA表达和c-Jun磷酸化完全取决于氧调节的转录的存在因子低氧诱导因子1α(HIF-1α)。相反,短暂的缺氧诱导了两种类型的mEF中的c-jun表达,表明该基因的早期或快速诱导与HIF-1α无关。这些发现表明,c-jun基因对缺氧有双相反应,其诱导取决于暴露的程度或持续时间。为了更全面地定义长时间缺氧与c-Jun磷酸化之间的关系,我们使用了来自小鼠的mEF,这些小鼠在c-Jun N端区域(丝氨酸63和73或苏氨酸91和93)中含有关键磷酸化位点的失活突变。这些mEFs暴露于长时间缺氧表明对c-Jun的HIF-1α依赖性磷酸化N末端位点的绝对要求。综上所述,这些发现表明c-Jun / AP-1和HIF-1协同调节病理生理微环境中的基因表达。

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