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Genome-wide analysis of HIF-2α chromatin binding sites under normoxia in human bronchial epithelial cells (BEAS-2B) suggests its diverse functions

机译:人类支气管上皮细胞(BEAS-2B)常氧下HIF-2α染色质结合位点的全基因组分析表明其功能多样

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摘要

Constitutive functional HIF-2α was recently identified in cancer and stem cell lines under normoxia. In this study, BEAS-2B, a bronchial epithelial cell line, was shown to constitutively express active HIF-2α under normoxia and exhibit markers of pluripotency including Oct-4, Nanog, and sphere formation. Oct-4 expression was reduced after knockdown of HIF-2α under normoxia. Global enrichment analysis of HIF-2α demonstrated the diverse functions of HIF-2α under normoxia. Bioinformatics analysis of the enriched loci revealed an enhancer role of HIF-2α binding sites, involvement of HIF-2α interacting proteins, and enriched de novo motifs which suggest the diverse role of HIF-2α in pseudohypoxia. The low ratio of the discovered loci overlapping with those revealed in cancer cell lines 786-O (16.1%) and MCF-7 (15.9%) under hypoxia indicated a prevailing non-canonical mechanism. Hypoxia had positive, marginal or adverse effects on the enrichment of the selected loci in ChIP-PCR assays. Deletion of the N-terminal activation domain (N-TAD) of HIF-2α disrupted the reporting activity of two of the loci annotated to ELN and ANKRD31. Hypoxia incurring abundance variation of HIF-2α may misrepresent the N-TAD functions as canonical hypoxia inducible features via C-TAD activation. Elucidation of the pseudohypoxia functions of constitutive HIF-2α is useful for resolving its role in malignancy and pluripotency.
机译:最近在常氧条件下,在癌症和干细胞系中发现了组成型功能性HIF-2α。在这项研究中,支气管上皮细胞系BEAS-2B被证明在常氧状态下组成性表达活性HIF-2α,并显示多能性标志物,包括Oct-4,Nanog和球形成。在常氧条件下敲低HIF-2α后,Oct-4表达降低。 HIF-2α的全球富集分析表明,常氧条件下HIF-2α的多种功能。对富集基因座的生物信息学分析显示,HIF-2α结合位点的增强子作用,HIF-2α相互作用蛋白的参与以及丰富的从头基序,提示HIF-2α在假性低氧中的多种作用。低氧条件下发现的位点与癌细胞系786-O(16.1%)和MCF-7(15.9%)中揭示的位点重叠的比例低,表明存在主要的非经典机制。低氧对ChIP-PCR分析中所选基因座的富集有正面,边际或不利影响。 HIF-2α的N末端激活域(N-TAD)的删除破坏了两个标注为ELN和ANKRD31的基因座的报告活性。缺氧导致HIF-2α的丰度变化可能会通过C-TAD激活将N-TAD功能误认为是典型的缺氧诱导特征。阐明组成型HIF-2α的假性低氧功能可用于解决其在恶性和多能性中的作用。

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