Department of Molecular Medicine and Medical Biotechnology, University of Naples Federico II, Naples, Italy.
CEINGE Biotecnologie Avanzate, Naples, Italy.
BMC Med Genet. 2019 Feb 26;20(1):37. doi: 10.1186/s12881-019-0767-1.
HIF1A (Hypoxia-Inducible-Factor 1A) expression in solid tumors is relevant to establish resistance to therapeutic approaches. The use of compounds direct against hypoxia signaling and HIF1A does not show clinical efficiency because of changeable oxygen concentrations in solid tumor areas. The identification of HIF1A targets expressed in both normoxia and hypoxia and of HIF1A/hypoxia signatures might meliorate the prognostic stratification and therapeutic successes in patients with high-risk solid tumors.
In this study, we conducted a combined analysis of RNA expression and DNA methylation of neuroblastoma cells silenced or unsilenced for HIF1A expression, grown in normoxia and hypoxia conditions.
The analysis of pathways highlights HIF-1 (heterodimeric transcription factor 1) activity in normoxia in metabolic process and HIF-1 activity in hypoxia in neuronal differentiation process. HIF1A driven transcriptional response in hypoxia depends on epigenetic control at DNA methylation status of gene regulatory regions. Furthermore, low oxygen levels generate HIF1A-dependent or HIF1A-independent signatures, able to stratify patients according to risk categories.
These findings may help to understand the molecular mechanisms by which low oxygen levels reshape gene signatures and provide new direction for hypoxia targeting in solid tumor.
实体瘤中 HIF1A(缺氧诱导因子 1A)的表达与建立对治疗方法的抗性有关。由于实体瘤区域氧浓度的变化,使用针对缺氧信号和 HIF1A 的化合物并不能显示出临床效果。鉴定在常氧和缺氧条件下表达的 HIF1A 靶标和 HIF1A/缺氧特征可能会改善高危实体瘤患者的预后分层和治疗效果。
在这项研究中,我们对 HIF1A 表达沉默或未沉默的神经母细胞瘤细胞在常氧和缺氧条件下进行了 RNA 表达和 DNA 甲基化的联合分析。
通路分析突出了 HIF-1(异二聚体转录因子 1)在常氧条件下的代谢过程中的活性和 HIF-1 在缺氧条件下的神经元分化过程中的活性。缺氧条件下 HIF1A 驱动的转录反应取决于基因调节区域的 DNA 甲基化状态的表观遗传控制。此外,低氧水平会产生依赖于 HIF1A 或独立于 HIF1A 的特征,能够根据风险类别对患者进行分层。
这些发现可能有助于理解低氧水平重塑基因特征的分子机制,并为实体瘤中的缺氧靶向提供新的方向。