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首页> 外文期刊>Cell death & disease. >Epigenetic status of argininosuccinate synthetase and argininosuccinate lyase modulates autophagy and cell death in glioblastoma
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Epigenetic status of argininosuccinate synthetase and argininosuccinate lyase modulates autophagy and cell death in glioblastoma

机译:精氨酸琥珀酸合成酶的表观遗传学状态和精氨酸琥珀酸裂解酶调节胶质母细胞瘤中的自噬和细胞死亡

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Arginine deprivation, either by nutritional starvation or exposure to ADI-PEG20, induces adaptive transcriptional upregulation of ASS1 and ASL in glioblastoma multiforme ex vivo cultures and cell lines. This adaptive transcriptional upregulation is blocked by neoplasia-specific CpG island methylation in either gene, causing arginine auxotrophy and cell death. In cells with methylated ASS1 or ASL CpG islands, ADI-PEG20 initially induces a protective autophagic response, but abrogation of this by chloroquine accelerates and potentiates cytotoxicity. Concomitant methylation in the CpG islands of both ASS1 and ASL , observed in a subset of cases, confers hypersensitivity to ADI-PEG20. Cancer stem cells positive for CD133 and methylation in the ASL CpG island retain sensitivity to ADI-PEG20. Our results show for the first time that epigenetic changes occur in both of the two key genes of arginine biosynthesis in human cancer and confer sensitivity to therapeutic arginine deprivation. We demonstrate that methylation status of the CpG islands, rather than expression levels per se of the genes, predicts sensitivity to arginine deprivation. Our results suggest a novel therapeutic strategy for this invariably fatal central nervous system neoplasm for which we have identified robust biomarkers and which overcomes the limitations to conventional chemotherapy imposed by the blood/brain barrier.
机译:通过营养饥饿或暴露于ADI-PEG20的精氨酸剥夺,诱导ASS1和AS1中的适应性转录上调,胶质母细胞瘤Multiforme离体培养和细胞系。这种自适应转录上调被任一基因的肿瘤特异性CpG岛甲基化阻断,导致精氨酸毒细胞和细胞死亡。在具有甲基化ASS1或ASLCPG岛的细胞中,ADI-PEG20最初诱导保护性自噬响应,但是通过氯喹省耗尽和增强细胞毒性。在案例子集中观察到的ASS1和ASL的CPG岛中的甲基化伴随着对ADI-PEG20的超敏反应。 ASL CpG岛中CD133的癌症干细胞阳性和甲基化对ADI-PEG20保持敏感性。我们的结果首次显示了人类癌症中精氨酸生物合成的两个关键基因的表演变化,并赋予治疗精氨酸剥夺的敏感性。我们证明了CpG岛的甲基化状态,而不是基因的表达水平,预测了对精氨酸剥夺的敏感性。我们的研究结果表明,这对这一新的治疗策略是这种致命的中枢神经系统肿瘤,我们已经确定了强大的生物标志物,并克服了血液/脑屏障施加的常规化疗的局限性。

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