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EPIGENETICS

机译:表观遗传学

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Aberrant cellular metabolism contributes significantly to the growth and proliferation of several tumour types. Identification of genes that control critical metabolic pathways is a major factor in the development of novel therapies that target metabolic defects in tumour cells. Our aim is to identify such genes in pae-diatric high grade glioma that are altered due to promoter hyper-methylation of cytosine residues in CpG dinucleotides. Genome wide DNA methylation profiling using Illumina infinium methylation 450K bead chip array was performed on 18 well-characterised short term cultures derived from paediatric high grade as-trocytoma including 3 from diffuse intrinsic pontine glioma. Data analyses were based on beta scores of probes for each gene as measures of intensities of methylation. Genes were selected with beta scores of tumour > =0.70 and that of normal human astrocytes < =0.30. We identified that two vital genes involved in the regulation of arginine biosynthetic pathway, argininosuccinate synthetase 1(ASS1) and argininosuccinate lyase (ASL) were methylated in 9/18 (50%) cases. Hyper methylation was confirmed by methylation-specific PCR and up-regulation of gene expression following treatment with 2 jjlM 5-aza-2'-deox-yctidine. Down-regulation of ASS 1 in hyper methylated samples was confirmed by Western blot analysis. Our findings report epigenetic deregulation of ASS1 • and ASL in a subset of paediatric high grade glioma. The enzymes encoded by these genes are essential elements of urea cycle that function together in the de novo synthesis of arginine from citrulline. Tumour cells with deficient ASS1/ ASL depend on external sources of arginine for survival and have been reported to be sensitive to autophagic cell death induced by arginine starvation. Therefore, further investigation may render the possibility of arginine-deprivation therapy in such sub type of paediatric high grade glioma. This therapeutic approach is of interest as tumour cells with abnormal expression of ASS1/ASL can be specifically targeted, while the normal cells can be spared.
机译:异常的细胞代谢极大地促进了几种肿瘤类型的生长和增殖。识别控制关键代谢途径的基因是开发针对肿瘤细胞代谢缺陷的新型疗法的主要因素。我们的目标是鉴定由于CpG二核苷酸中胞嘧啶残基的启动子过度甲基化而导致的儿科高级神经胶质瘤中此类基因的改变。使用Illumina Infinium甲基化450K珠芯片阵列对全基因组DNA甲基化进行了分析,对源自小儿高级星形细胞瘤的18个特征明确的短期培养物进行了分析,其中3种来自弥漫性桥脑神经胶质瘤。数据分析基于每种基因探针的β评分作为甲基化强度的量度。选择肿瘤的beta得分≥0.70和正常人星形胶质细胞的beta得分≤0.30的基因。我们发现,在9/18(50%)的病例中,两个涉及精氨酸生物合成途径调控的重要基因,精氨琥珀酸合成酶1(ASS1)和精氨琥珀酸裂合酶(ASL)被甲基化。通过甲基化特异性PCR和用2jjM 5-氮杂-2'-脱氧胸苷处理后基因表达的上调证实了高甲基化。 Western印迹分析证实了高甲基化样品中ASS 1的下调。我们的研究结果报告了小儿高级别神经胶质瘤亚群中ASS1•和ASL的表观遗传失调。这些基因编码的酶是尿素循环的必需元素,它们在从瓜氨酸从头合成精氨酸时一起起作用。 ASS1 / ASL不足的肿瘤细胞依赖于精氨酸的外部来源来存活,并且据报道对精氨酸饥饿诱导的自噬细胞死亡敏感。因此,进一步的研究可能在这种小儿高级别神经胶质瘤亚型中剥夺精氨酸治疗的可能性。这种治疗方法令人感兴趣,因为可以特异性靶向具有ASS1 / ASL异常表达的肿瘤细胞,而可以保留正常细胞。

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  • 来源
    《Neuro-Oncology》 |2014年第5期|v75-v78|共4页
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