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Analysis of opposing histone modifications H3K4me3 and H3K27me3 reveals candidate diagnostic biomarkers for TNBC and gene set prediction combination

机译:对相反的组蛋白修饰H3K4me3和H3K27me3的分析揭示了TNBC和基因组预测组合的候选诊断生物标志物

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摘要

Breast cancer encompasses a major portion of human cancers and must be carefully monitored for appropriate diagnoses and treatments. Among the many types of breast cancers, triple negative breast cancer (TNBC) has the worst prognosis and the least cases reported. To gain a better understanding and a more decisive precursor for TNBC, two major histone modifications, an activating modification H3K4me3 and a repressive modification H3K27me3, were analyzed using data from normal breast cell lines against TNBC cell lines. The combination of these two histone markers on the gene promoter regions showed a great correlation with gene expression. A list of signature genes was defined as active (highly enriched H3K4me3), including NOVA1, NAT8L, and MMP16, and repressive genes (highly enriched H3K27me3), IRX2 and ADRB2, according to the distribution of these histone modifications on the promoter regions. To further enhance the investigation, potential candidates were also compared with other types of breast cancer to identify signs specific to TNBC. RNA-seq data was implemented to confirm and verify gene regulation governed by the histone modifications. Combinations of the biomarkers based on H3K4me3 and H3K27me3 showed the diagnostic value AUC 93.28% with P-value of 1.16e-226. The results of this study suggest that histone modification analysis of opposing histone modifications may be valuable toward developing biomarkers and targets for TNBC.
机译:乳腺癌涵盖了人类癌症的主要部分,必须对其进行仔细的监测以进行适当的诊断和治疗。在多种类型的乳腺癌中,三阴性乳腺癌(TNBC)的预后最差,病例最少。为了获得更好的理解和对TNBC更具决定性的前体,我们使用来自正常乳腺细胞系针对TNBC细胞系的数据分析了两个主要的组蛋白修饰,即激活修饰H3K4me3和抑制性修饰H3K27me3。这两个组蛋白标记在基因启动子区域的组合显示出与基因表达高度相关。根据这些组蛋白修饰在启动子区域的分布,将一系列特征基因定义为活跃的(高度富集的H3K4me3),包括NOVA1,NAT8L和MMP16,以及抑制性基因(高度富集的H3K27me3),IRX2和ADRB2。为了进一步加强调查,还将潜在的候选者与其他类型的乳腺癌进行了比较,以识别特定于TNBC的体征。 RNA-seq数据用于确认和验证受组蛋白修饰控制的基因调控。基于H3K4me3和H3K27me3的生物标志物的组合显示诊断值为AUC 93.28%,P值为1.16e-226。这项研究的结果表明,相对的组蛋白修饰的组蛋白修饰分析对于开发TNBC的生物标志物和靶标可能有价值。

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