Fischer Ulrike, Radermacher Jens, Mayer Jens, Mehraein Yasmin, Meese Eckart
Institut für Humangenetik, Universitätskliniken des Saarlandes, D-66421 Homburg/Saar, Germany.
Int J Oncol. 2008 Sep;33(3):509-15.
Gene amplification is frequently found in human glioblastoma but the mechanisms driving amplifications remain to be elucidated. Hypoxia as hallmark of glioblastoma is known to be involved in the induction of fragile sites that are central to gene amplification. We analyzed the potential of hypoxia (pO2 0%) and mini hypoxia (pO2 5%) to induce fragile sites within a homogeneously staining region (HSR) at 12q14-15 in a glioblastoma cell line (TX3868). Treatment of cells by hypoxia or by mini hypoxia induced double minutes (DMs) and caused breakage of the HSR structure at 12q14-15, suggesting a novel hypoxia inducible fragile site on 12q. Treatment with aphidicolin, a known fragile site inducer, indicates that the hypoxia inducible fragile site is a common fragile site. Reintegration of amplified sequences and occurrence of anaphase-bridge-like structures shows that mini hypoxia and hypoxia are able to initiate amplification processes in human glioblastoma cells. Hypoxia as known tumor microenvironment factor is crucial for the development of amplifications in glioblastoma. The identification and characterization of novel common fragile sites induced by hypoxia will improve the understanding of mechanisms underlying amplifications in glioblastoma.
基因扩增在人类胶质母细胞瘤中经常被发现,但驱动扩增的机制仍有待阐明。已知作为胶质母细胞瘤标志的缺氧参与了对基因扩增至关重要的脆性位点的诱导。我们分析了缺氧(pO2 0%)和轻度缺氧(pO2 5%)在胶质母细胞瘤细胞系(TX3868)中诱导12q14 - 15处均匀染色区(HSR)内脆性位点的潜力。通过缺氧或轻度缺氧处理细胞诱导出双微体(DMs),并导致12q14 - 15处HSR结构的断裂,提示12号染色体上存在一个新的缺氧诱导脆性位点。用已知的脆性位点诱导剂阿非科林处理表明,缺氧诱导脆性位点是一个常见脆性位点。扩增序列的重新整合和后期桥样结构的出现表明,轻度缺氧和缺氧能够在人类胶质母细胞瘤细胞中启动扩增过程。缺氧作为已知的肿瘤微环境因素对胶质母细胞瘤中扩增的发生至关重要。对缺氧诱导的新型常见脆性位点的鉴定和表征将增进对胶质母细胞瘤扩增潜在机制的理解。