Hsu Chen-Jen, Meers Oliver, Buschbeck Marcus, Heidel Florian H
Internal Medicine C, Greifswald University Medicine, 17475 Greifswald, Germany.
Cancer and Leukaemia Epigenetics and Biology Program, Josep Carreras Leukaemia Research Institute (IJC), Campus Can Ruti, 08916 Badalona, Spain.
Cancers (Basel). 2021 Jun 15;13(12):3003. doi: 10.3390/cancers13123003.
The epigenome regulates gene expression and provides a molecular memory of cellular events. A growing body of evidence has highlighted the importance of epigenetic regulation in physiological tissue homeostasis and malignant transformation. Among epigenetic mechanisms, the replacement of replication-coupled histones with histone variants is the least understood. Due to differences in protein sequence and genomic distribution, histone variants contribute to the plasticity of the epigenome. Here, we focus on the family of macroH2A histone variants that are particular in having a tripartite structure consisting of a histone fold, an intrinsically disordered linker and a globular macrodomain. We discuss how these domains mediate different molecular functions related to chromatin architecture, transcription and DNA repair. Dysregulated expression of macroH2A histone variants has been observed in different subtypes of cancer and has variable prognostic impact, depending on cellular context and molecular background. We aim to provide a concise review regarding the context- and isoform-dependent contributions of macroH2A histone variants to cancer development and progression.
表观基因组调控基因表达,并为细胞事件提供分子记忆。越来越多的证据凸显了表观遗传调控在生理组织稳态和恶性转化中的重要性。在表观遗传机制中,用组蛋白变体替换复制偶联组蛋白的机制是了解最少的。由于蛋白质序列和基因组分布的差异,组蛋白变体有助于表观基因组的可塑性。在这里,我们聚焦于macroH2A组蛋白变体家族,其特别之处在于具有由组蛋白折叠、内在无序连接子和球状macro结构域组成的三重结构。我们讨论这些结构域如何介导与染色质结构、转录和DNA修复相关的不同分子功能。在不同癌症亚型中已观察到macroH2A组蛋白变体的表达失调,并且根据细胞环境和分子背景,其具有不同的预后影响。我们旨在就macroH2A组蛋白变体对癌症发生和进展的背景及异构体依赖性贡献提供简要综述。