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首页> 外文期刊>Clinical & developmental immunology. >Hypoxic Modulation of HLA-G Expression through the Metabolic Sensor HIF-1 in Human Cancer Cells
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Hypoxic Modulation of HLA-G Expression through the Metabolic Sensor HIF-1 in Human Cancer Cells

机译:通过人体癌细胞中的代谢传感器HIF-1进行HLA-G表达的低氧调节

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摘要

The human leukocyte antigen-G (HLA-G) is considered an immune checkpoint molecule involved in tumor immune evasion. Hypoxia and the metabolic sensor hypoxia-inducible factor 1 (HIF-1) are hallmarks of metastasization, angiogenesis, and intense tumor metabolic activity. The purpose of this review was to examine original in vitro studies carried out in human cancer cell lines, which reported data about HLA-G expression and HIF-1 mediated-HLA-G expression in response to hypoxia. The impact of HLA-G genomic variability on the hypoxia responsive elements (HREs) specific for HIF-1 binding was also discussed. Under hypoxia, HLA-G-negative cell lines might transcribe HLA-G without translation of the protein while in contrast, HLA-G-positive cell lines, showed a reduced HLA-G transcriptional activity and protein level. HIF-1 modulation of HLA-G expression induced by hypoxia was demonstrated in different cell lines. HLA-G SNPs rs1632947 and rs41551813 located in distinct HREs demonstrated a prominent role of HIF-1 binding by DNA looping. Our research revealed a fine regulation of HLA-G in hypoxic conditions through HIF-1, depending on the cellular type and HLA-G genomic variability. Specifically, SNPs found in HREs should be considered in future investigations as markers with potential clinical value especially in metastatic malignancies.
机译:人白细胞抗原-G(HLA-G)被认为是参与肿瘤免疫逃避的免疫检查点分子。缺氧和代谢传感器缺氧诱导因子1(HIF-1)是转移,血管生成和强烈的肿瘤代谢活动的标志。这篇综述的目的是检查在人类癌细胞系中进行的原始体外研究,该研究报道了有关缺氧时HLA-G表达和HIF-1介导的HLA-G表达的数据。还讨论了HLA-G基因组变异性对特异性针对HIF-1结合的缺氧反应元件(HRE)的影响。在缺氧条件下,HLA-G阴性细胞系可能转录HLA-G而不会翻译蛋白质,而相反,HLA-G阳性细胞系显示出降低的HLA-G转录活性和蛋白质水平。在不同细胞系中证实了由缺氧诱导的HLA-G表达的HIF-1调节。位于不同HRE中的HLA-G SNP rs1632947和rs41551813通过DNA环化显示了HIF-1结合的重要作用。我们的研究揭示了低氧条件下通过HIF-1对HLA-G的精细调节,具体取决于细胞类型和HLA-G基因组变异性。特别是,在HRE中发现的SNP在将来的研究中应被视为具有潜在临床价值的标志物,尤其是在转移性恶性肿瘤中。

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