Department of Bioscience and Nutrition, Center for Biosciences, NOVUM, Karolinska Institutet, Stockholm, Sweden;
Blood. 2014 Apr 24;123(17):e46-57. doi: 10.1182/blood-2013-02-483537. Epub 2014 Mar 26.
Hematopoietic differentiation is governed by a complex regulatory program controlling the generation of different lineages of blood cells from multipotent hematopoietic stem cells. The transcriptional program that dictates hematopoietic cell fate and differentiation requires an epigenetic memory function provided by a network of epigenetic factors regulating DNA methylation, posttranslational histone modifications, and chromatin structure. Aberrant interactions between epigenetic factors and transcription factors cause perturbations in the blood cell differentiation program that result in various types of hematopoietic disorders. To elucidate the contributions of different epigenetic factors in human hematopoiesis, high-throughput cap analysis of gene expression was used to build transcription profiles of 199 epigenetic factors in a wide range of blood cells. Our epigenetic transcriptome analysis revealed cell type- (eg, HELLS and ACTL6A), lineage- (eg, MLL), and/or leukemia- (eg, CHD2, CBX8, and EPC1) specific expression of several epigenetic factors. In addition, we show that several epigenetic factors use alternative transcription start sites in different cell types. This analysis could serve as a resource for the scientific community for further characterization of the role of these epigenetic factors in blood development.
造血分化受一个复杂的调控程序控制,该程序控制多能造血干细胞生成不同谱系的血细胞。决定造血细胞命运和分化的转录程序需要由一组表观遗传因子调节 DNA 甲基化、翻译后组蛋白修饰和染色质结构来提供表观遗传记忆功能。表观遗传因子和转录因子之间的异常相互作用导致血细胞分化程序的扰动,导致各种类型的造血障碍。为了阐明不同表观遗传因子在人类造血中的作用,我们使用高通量基因表达帽分析技术构建了广泛的血细胞中 199 个表观遗传因子的转录谱。我们的表观转录组分析揭示了几个表观遗传因子在细胞类型(例如,HELLS 和 ACTL6A)、谱系(例如,MLL)和/或白血病(例如,CHD2、CBX8 和 EPC1)特异性表达。此外,我们还表明,一些表观遗传因子在不同的细胞类型中使用不同的转录起始位点。该分析可以作为科学界的资源,用于进一步表征这些表观遗传因子在血液发育中的作用。