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DNA methylation profiling distinguishes three clusters of breast cancer cell lines (Conference Paper)

机译:DNA甲基化图谱可区分三类乳腺癌细胞系(会议论文)

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摘要

Methylation change plays an important role in many cellular systems, including cancer development. During recent years, genome-wide or large-scale methylation data has become available thanks to rapid advances in high-throughput biotechnologies. So far, researchers have always used gene expression profiling to study disease subtypes and related therapies. In this study, we investigated methylation profiles in 30 breast cancer cell lines using methylation data generated by microarray technologies. Strong variation of the number of methylation peaks was found among these 30 cell lines; however, more peaks were found in the upstream regions than in downstream regions of genes. We further grouped the methylation profiles of these cell lines into three consensus clusters. Finally, we performed an integrative analysis of breast cancer cell lines using both methylation and gene-expression profiling data. There was no significant correlation between methylation-profiling subtypes and gene-expression profiling subtypes, suggesting the complex nature of methylation in the regulation of gene expression. However, we found basal B cell lines appeared exclusively in two methylation clusters. Although these results are preliminary, this study suggests that methylation profiling might be promising in disease subtype classification and the development of therapeutic strategies.
机译:甲基化变化在包括癌症发展在内的许多细胞系统中都起着重要作用。近年来,由于高通量生物技术的飞速发展,全基因组或大规模甲基化数据已经可用。迄今为止,研究人员一直使用基因表达谱来研究疾病亚型和相关疗法。在这项研究中,我们使用微阵列技术生成的甲基化数据调查了30个乳腺癌细胞系中的甲基化分布。在这30个细胞系中发现了甲基化峰数的强烈变化;但是,在基因的上游区域比在下游区域发现更多的峰。我们进一步将这些细胞系的甲基化分布图分为三个共有簇。最后,我们使用甲基化和基因表达谱数据对乳腺癌细胞系进行了综合分析。甲基化分布亚型和基因表达分布亚型之间没有显着相关性,表明甲基化在基因表达调控中的复杂性。但是,我们发现基底B细胞系仅出现在两个甲基化簇中。尽管这些结果是初步的,但这项研究表明,甲基化谱分析可能在疾病亚型分类和治疗策略的发展中很有前途。

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