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Spontaneous γH2AX Foci in Human Solid Tumor-Derived Cell Lines in Relation to p21WAF1 and WIP1 Expression

机译:人固态肿瘤衍生细胞系中自发性γH2AX灶与p21WAF1和WIP1表达的关系

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摘要

Phosphorylation of H2AX on Ser139 (γH2AX) after exposure to ionizing radiation produces nuclear foci that are detectable by immunofluorescence microscopy. These so-called γH2AX foci have been adopted as quantitative markers for DNA double-strand breaks. High numbers of spontaneous γH2AX foci have also been reported for some human solid tumor-derived cell lines, but the molecular mechanism(s) for this response remains elusive. Here we show that cancer cells (e.g., HCT116; MCF7) that constitutively express detectable levels of p21WAF1 (p21) exhibit low numbers of γH2AX foci (<3ucleus), whereas p21 knockout cells (HCT116p21−/−) and constitutively low p21-expressing cells (e.g., MDA-MB-231) exhibit high numbers of foci (e.g., >50ucleus), and that these foci are not associated with apoptosis. The majority (>95%) of cells within HCT116p21−/− and MDA-MB-231 cultures contain high levels of phosphorylated p53, which is localized in the nucleus. We further show an inverse relationship between γH2AX foci and nuclear accumulation of WIP1, an oncogenic phosphatase. Our studies suggest that: (i) p21 deficiency might provide a selective pressure for the emergence of apoptosis-resistant progeny exhibiting genomic instability, manifested as spontaneous γH2AX foci coupled with phosphorylation and nuclear accumulation of p53; and (ii) p21 might contribute to positive regulation of WIP1, resulting in dephosphorylation of γH2AX.
机译:暴露于电离辐射后,Ser139(γH2AX)上的H2AX磷酸化产生核病灶,可通过免疫荧光显微镜检测到。这些所谓的γH2AX焦点已被用作DNA双链断裂的定量标记。对于某些人类实体肿瘤衍生的细胞系,也已经报道了大量的自发γH2AX病灶,但是这种反应的分子机制仍然难以捉摸。在这里,我们显示组成型表达可检测水平的p21 WAF1 (p21)的癌细胞(例如HCT116; MCF7)表现出少量的γH2AX病灶(<3 /细胞核),而p21敲除细胞(HCT116p21 -/-)和低表达的p21组成性细胞(例如MDA-MB-231)表现出大量的病灶(例如> 50 /核),并且这些病灶与凋亡无关。 HCT116p21-/-和MDA-MB-231培养物中的大多数细胞(> 95%)都含有高水平的磷酸化p53,其位于细胞核中。我们进一步显示γH2AX病灶与WIP1(一种致癌磷酸酶)的核积累之间存在反比关系。我们的研究表明:(i)p21缺乏可能为表现出基因组不稳定的抗凋亡后代的出现提供选择压力,表现为自发的γH2AX灶与p53的磷酸化和核积累有关; (ii)p21可能有助于WIP1的正调控,从而导致γH2AX的去磷酸化。

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