Spencer Shawal, Gugliotta Agustina, Gödecke Natascha, Hauser Hansjörg, Wirth Dagmar
Model Systems for Infection and Immunity, Helmholtz Centre for Infection Research, Braunschweig 38124, Germany.
Model Systems for Infection and Immunity, Helmholtz Centre for Infection Research, Braunschweig 38124, Germany; Experimental Hematology, Hannover Medical School, Hannover 30625, Germany.
J Genet Genomics. 2016 Aug 20;43(8):503-11. doi: 10.1016/j.jgg.2016.05.008. Epub 2016 May 27.
Tumor cells display phenotypic plasticity and heterogeneity due to genetic and epigenetic variations which limit the predictability of therapeutic interventions. Chromatin modifications can arise stochastically but can also be a consequence of environmental influences such as the microenvironment of cancer cells. A better understanding of the impact and dynamics of epigenetic modulation at defined chromosomal sites is required to get access to the underlying mechanisms. We investigated the epigenetic modulations leading to cell-to-cell heterogeneity in a tumor cell line model. To this end, we analyzed expression variance in 80 genetically uniform cell populations having a single-copy reporter randomly integrated in the genome. Single-cell analysis showed high intraclonal heterogeneity. Epigenetic characterization revealed that expression heterogeneity was accompanied by differential histone marks whereas contribution of DNA methylation could be excluded. Strikingly, some clones revealed a highly dynamic, stochastically altered chromatin state of the transgene cassette which was accompanied with a metastable expression pattern. In contrast, other clones represented a robust chromatin state of the transgene cassette with a stable expression pattern. Together, these results elucidate locus-specific epigenetic modulation in gene expression that contributes to phenotypic heterogeneity of cells and might account for cellular plasticity.
由于遗传和表观遗传变异,肿瘤细胞表现出表型可塑性和异质性,这限制了治疗干预的可预测性。染色质修饰可能随机出现,但也可能是环境影响的结果,如癌细胞的微环境。为了深入了解潜在机制,需要更好地理解特定染色体位点上表观遗传调控的影响和动态变化。我们在一个肿瘤细胞系模型中研究了导致细胞间异质性的表观遗传调控。为此,我们分析了80个基因一致的细胞群体中的表达差异,这些细胞群体具有随机整合到基因组中的单拷贝报告基因。单细胞分析显示出高克隆内异质性。表观遗传学特征表明,表达异质性伴随着组蛋白标记的差异,而DNA甲基化的作用可以排除。引人注目的是,一些克隆显示转基因盒的染色质状态高度动态、随机改变,伴随着亚稳定的表达模式。相比之下,其他克隆代表了转基因盒的稳定染色质状态和稳定的表达模式。总之,这些结果阐明了基因表达中位点特异性的表观遗传调控,这种调控导致细胞表型异质性,并可能解释细胞可塑性。