Pescador Nuria, Cuevas Yolanda, Naranjo Salvador, Alcaide Marisa, Villar Diego, Landázuri Manuel O, Del Peso Luis
Departamento de Bioquímica, Facultad de Medicina, Universidad Autónoma de Madrid, Arzobispo Morcillo s/n, 28029 Madrid, Spain.
Biochem J. 2005 Aug 15;390(Pt 1):189-97. doi: 10.1042/BJ20042121.
Low oxygen levels induce an adaptive response in cells through the activation of HIFs (hypoxia-inducible factors). These transcription factors are mainly regulated by a group of proline hydroxylases that, in the presence of oxygen, target HIF for degradation. The expression of two such enzymes, EGLN1 [EGL nine homologous protein 1, where EGL stands for egg laying defective (Caenorhabditis elegans gene)] and EGLN3, is induced by hypoxia through a negative feedback loop, and we have demonstrated recently that hypoxic induction of EGLN expression is HIF-dependent. In the present study, we have identified an HRE (hypoxia response element) in the region of the EGLN3 gene using a combination of bioinformatics and biological approaches. Initially, we isolated a number of HRE consensus sequences in a region of 40 kb around the human EGLN3 gene and studied their evolutionary conservation. Subsequently, we examined the functionality of the conserved HRE sequences in reporter and chromatin precipitation assays. One of the HREs, located within a conserved region of the first intron of the EGLN3 gene 12 kb downstream of the transcription initiation site, bound HIF in vivo. Furthermore, this sequence was able to drive reporter gene expression under conditions of hypoxia in an HRE-dependent manner. Indeed, we were able to demonstrate that HIF was necessary and sufficient to induce gene expression from this enhancer sequence.
低氧水平通过激活缺氧诱导因子(HIFs)在细胞中引发适应性反应。这些转录因子主要受一组脯氨酰羟化酶的调控,在有氧存在的情况下,脯氨酰羟化酶会将HIF作为降解靶点。两种这样的酶,EGLN1[EGL九同源蛋白1,其中EGL代表产卵缺陷(秀丽隐杆线虫基因)]和EGLN3的表达,通过负反馈环由缺氧诱导,并且我们最近已经证明EGLN表达的缺氧诱导是HIF依赖性的。在本研究中,我们结合生物信息学和生物学方法,在EGLN3基因区域鉴定出一个缺氧反应元件(HRE)。最初,我们在人类EGLN3基因周围40kb的区域分离出一些HRE共有序列,并研究了它们的进化保守性。随后,我们在报告基因和染色质沉淀实验中检测了保守HRE序列的功能。其中一个HRE位于转录起始位点下游12kb处EGLN3基因第一个内含子的保守区域内,在体内与HIF结合。此外,该序列能够在缺氧条件下以HRE依赖性方式驱动报告基因表达。事实上,我们能够证明HIF对于从该增强子序列诱导基因表达是必要且充分的。