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Quantitative Histone Mass Spectrometry Identifies Elevated Histone H3 Lysine 27 (Lys(27)) Trimethylation in Melanoma

机译:定量组蛋白质谱鉴定黑素瘤中组蛋白H3赖氨酸27(Lys(27))三甲基化水平升高

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Normal cell growth is characterized by a regulated epigenetic program that drives cellular activities such as gene transcription, DNA replication, and DNA damage repair. Perturbation of this epigenetic program can lead to events such as mis-regulation of gene transcription and diseases such as cancer. To begin to understand the epigenetic program correlated to the development of melanoma, we performed a novel quantitative mass spectrometric analysis of histone post-translational modifications mis-regulated in melanoma cell culture as well as patient tumors. Aggressive melanoma cell lines as well as metastatic melanoma were found to have elevated histone H3 Lys(27) trimethylation (H3K27me3) accompanied by overexpressed methyltransferase EZH2 that adds the specific modification. The altered epigenetic program that led to elevated H3K27me3 in melanoma cell culture was found to directly silence transcription of the tumor suppressor genes RUNX3 and E-cadherin. The EZH2-mediated silencing of RUNX3 and E-cadherin transcription was also validated in advanced stage human melanoma tissues. This is the first study focusing on the detailed epigenetic mechanisms leading to EZH2-mediated silencing of RUNX3 and E-cadherin tumor suppressors in melanoma. This study underscores the utility of using high resolution mass spectrometry to identify mis-regulated epigenetic programs in diseases such as cancer, which could ultimately lead to the identification of biological markers for diagnostic and prognostic applications.
机译:正常细胞生长的特征是受调控的表观遗传程序,该程序驱动细胞活动,例如基因转录,DNA复制和DNA损伤修复。对这种表观遗传程序的干扰可能导致事件,例如基因转录的失调和癌症等疾病。为了开始理解与黑素瘤发展相关的表观遗传程序,我们对黑素瘤细胞培养以及患者肿瘤中错调的组蛋白翻译后修饰进行了新型定量质谱分析。侵略性黑色素瘤细胞系以及转移性黑色素瘤被发现具有升高的组蛋白H3 Lys(27)三甲基化(H3K27me3),并伴随着过度表达的甲基转移酶EZH2,这增加了特定的修饰。发现导致黑素瘤细胞培养物中H3K27me3升高的表观遗传程序的改变直接沉默了肿瘤抑制基因RUNX3和E-cadherin的转录。 EZH2介导的RUNX3和E-cadherin转录的沉默也已在晚期人黑素瘤组织中得到验证。这是第一个针对详细表观遗传机制的研究,该机制导致EZH2介导的黑色素瘤中RUNX3和E-钙粘蛋白抑癌剂沉默。这项研究强调了使用高分辨率质谱法来识别癌症等疾病中表观遗传程序的调控失误的实用性,这最终可能导致鉴定用于诊断和预后应用的生物学标记。

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