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Regulatory mechanisms in the stabilization of p53 tumor suppressor gene in zinc depleted hepatoblastoma cells

机译:缺锌肝母细胞瘤细胞中p53抑癌基因稳定的调控机制

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摘要

The influence of zinc status on the expression of p53, the human tumor suppressor gene, as well as other proteins that may be involved in p53 stability were examined in hepatoblastoma cells (HepG2). Cells were cultured in the zinc-depleted and supplemented media. Chelex 100 resin, a divalent ion-chelating resin, was used to deplete zinc from fetal bovine serum FBS. The Dulbecco's Modified Eagle Medium (DMEM) with 10% chelexed FBS, containing 0.2 μmol/L and 0.4 μmol/L zinc added were termed the zinc deficient ZD0.2 and ZD0.4 media, respectively. The other media consisted of the zinc-normal (ZN), zinc-adequate (ZA), and zinc supplement (ZS) groups, contained 4, 16, and 32 μmol/L zinc, respectively. Cells growth was depressed only in ZD0.2 cells to 78% of ZN cells. As compared to ZN cells, cellular zinc levels were reduced 67% and 56% in ZD0.2 and ZD0.4, respectively, but increased 84% and 127% in ZA and ZS cells, respectively. Nuclear p53 levels were almost 100% and 40% higher in ZD0.2 and ZD0.4 cells, respectively, than ZN cells. In contrast, p53 mRNA abundance was increased 40% in ZD0.4 cells and depressed 60% in ZD0.2 cells as compared with ZN cells. No differences in nuclear p53 protein and p53 mRNA levels were observed among ZN, ZA, and ZS cells. Total cellular and nuclear p21 protein, a major downstream p53 target, as well as p21 mRNA levels were markedly reduced in ZD0.2 and ZD0.4 cells, but were not altered in ZA and ZS cells, when compared to ZN cells. Mdm2 protein, which modulates p53 nuclear export and degradation, was more than twofold higher in the nuclear of ZD0.2 and ZD0.4 cells as compared to ZN cells. In contrast, Mdmx, known to bind Mdm2 and interfere with Mdm2-dependent p53 nuclear export, was depressed in the cytoplasm but not in the nucleus of ZD0.2 and ZD0.4 cells as compared with ZN cells. Moreover, c-Abl, capable of binding mdm2 and enhancing its nuclear accumulation in a p53-independent manner, was not alter in the total but lower in the nucleus of ZD0.2 and ZD0.4 cells than in ZN cells. However, the amount of Mdm2 bound to p53 was depressed and that bound to Mdmx and c-Abl were increased in ZD0.2 and ZD0.4 cells. In zinc deficiency, the reduced binding of Mdm2 to p53 may have resulted from the observed enhanced phosphorylation of p53 at serine 15 and 392, and Mdm2 tyrosine phosphorylation. Most importantly, the accumulation of nuclear p53 in ZD0.2 and ZD0.4 may have resulted from the marked reduction in the nuclear p300, a platform for bringing Mdm2, p53, and other factors together, for p53 nuclear export and degradation.
机译:在肝母细胞瘤细胞(HepG2)中检查了锌状态对p53,人类肿瘤抑制基因以及其他可能与p53稳定性有关的蛋白质表达的影响。在缺锌和补充锌的培养基中培养细胞。 Chelex 100树脂是一种二价离子螯合树脂,用于从胎牛血清FBS中消耗锌。添加了含0.2μmol/ L和0.4μmol/ L锌的10%Chelexed FBS的Dulbecco改良Eagle培养基(DMEM)分别称为缺锌ZD0.2和ZD0.4培养基。其他介质由正常锌(ZN),充足锌(ZA)和补锌(ZS)组组成,分别包含4、16和32μmol/ L锌。细胞生长仅在ZD0.2细胞中下降至ZN细胞的78%。与ZN细胞相比,ZD0.2和ZD0.4中的细胞锌水平分别降低了67%和56%,而ZA和ZS细胞中的细胞锌水平分别提高了84%和127%。 ZD0.2和ZD0.4细胞的核p53水平分别比ZN细胞高100%和40%。相比之下,与ZN细胞相比,ZD0.4细胞中p53 mRNA的丰度增加了40%,而ZD0.2细胞中p53 mRNA的丰度却降低了60%。在ZN,ZA和ZS细胞之间未观察到核p53蛋白和p53 mRNA水平的差异。与ZN细胞相比,ZD0.2和ZD0.4细胞的总细胞和核p21蛋白(主要的下游p53靶标)以及p21 mRNA水平显着降低,但在ZA和ZS细胞中没有改变。与ZN细胞相比,调节p53核输出和降解的Mdm2蛋白在ZD0.2和ZD0.4细胞的核中高出两倍以上。相反,与ZN细胞相比,已知结合Mdm2并干扰Mdm2依赖性p53核输出的Mdmx在细胞质中被抑制,但在ZD0.2和ZD0.4细胞的细胞核中却没有被抑制。此外,能够以不依赖p53的方式结合mdm2并增强其核积累的c-Abl总体上没有改变,但在ZD0.2和ZD0.4细胞的核中比在ZN细胞中低。但是,在ZD0.2和ZD0.4细胞中,与p53结合的Mdm2的量降低,与Mdmx和c-Abl结合的量增加。在锌缺乏症中,Mdm2与p53的结合减少可能是由于观察到的在丝氨酸15和392处p53的磷酸化增强以及Mdm2酪氨酸的磷酸化所致。最重要的是,ZD0.2和ZD0.4中核p53的积累可能是由于核p300的显着减少所致,p300是将Mdm2,p53和其他因素聚集在一起的平台,用于p53核的输出和降解。

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    Alshatwi Ali A.;

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  • 年度 2003
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