Nichol J N, Dupéré-Richer D, Ezponda T, Licht J D, Miller W H
Segal Cancer Centre and Lady Davis Institute, Jewish General Hospital, Division of Experimental Medicine, McGill University, Montreal, QC, Canada.
Division of Hematology Oncology, The University of Florida Health Cancer Center, Gainesville, FL, United States.
Adv Cancer Res. 2016;131:59-95. doi: 10.1016/bs.acr.2016.05.001. Epub 2016 Jun 17.
Epigenetics, the modification of chromatin without changing the DNA sequence itself, determines whether a gene is expressed, and how much of a gene is expressed. Methylation of lysine 27 on histone 3 (H3K27me), a modification usually associated with gene repression, has established roles in regulating the expression of genes involved in lineage commitment and differentiation. Not surprisingly, alterations in the homeostasis of this critical mark have emerged as a recurrent theme in the pathogenesis of many cancers. Perturbations in the distribution or levels of H3K27me occur due to deregulation at all levels of the process, either by mutation in the histone itself, or changes in the activity of the writers, erasers, or readers of this mark. Additionally, as no single histone mark alone determines the overall transcriptional readiness of a chromatin region, deregulation of other chromatin marks can also have dramatic consequences. Finally, the significance of mutations altering H3K27me is highlighted by the poor clinical outcome of patients whose tumors harbor such lesions. Current therapeutic approaches targeting aberrant H3K27 methylation remain to be proven useful in the clinic. Understanding the biological consequences and gene expression pathways affected by aberrant H3K27 methylation may lead to identification of new therapeutic targets and strategies.
表观遗传学是指在不改变DNA序列本身的情况下对染色质进行修饰,它决定了一个基因是否表达以及表达量的多少。组蛋白3赖氨酸27位点的甲基化(H3K27me),这一通常与基因抑制相关的修饰,在调控参与谱系定向和分化的基因表达中发挥着既定作用。毫不奇怪,这种关键标记的稳态改变已成为许多癌症发病机制中的一个反复出现的主题。H3K27me分布或水平的扰动是由于该过程各个层面的失调所致,这可能是由于组蛋白本身的突变,或者是该标记的写入者、擦除者或读取者活性的改变。此外,由于没有单一的组蛋白标记能单独决定染色质区域的整体转录准备状态(易感性),其他染色质标记的失调也可能产生显著后果。最后,肿瘤中存在此类病变的患者临床预后较差,这凸显了改变H3K27me的突变的重要性。目前针对异常H3K27甲基化的治疗方法在临床上的有效性仍有待证实。了解异常H3K27甲基化所影响的生物学后果和基因表达途径,可能会促成新治疗靶点和策略的识别。