Tagoh Hiromi, Melnik Svitlana, Lefevre Pascal, Chong Suyinn, Riggs Arthur D, Bonifer Constanze
Molecular Medicine Unit, University of Leeds, St James's University Hospital, United Kingdom.
Blood. 2004 Apr 15;103(8):2950-5. doi: 10.1182/blood-2003-09-3323. Epub 2003 Dec 18.
In order to gain insights in the true molecular mechanisms involved in cell fate decisions, it is important to study the molecular details of gene activation where such decisions occur, which is at the level of the chromatin structure of individual genes. In the study presented here we addressed this issue and examined the dynamic development of an active chromatin structure at the chicken lysozyme locus during the differentiation of primary myeloid cells from transgenic mouse bone marrow. Using in vivo footprinting we found that stable enhancer complex assembly and high-level gene expression are late events in cell differentiation. However, even before the onset of gene expression and stable transcription factor binding, specific chromatin alterations are observed. This includes changes in DNA topology and the selective demethylation of CpG dinucleotides located in the cores of critical transcription factor binding sites, but not in flanking DNA. These results firmly support the idea that epigenetic programs guiding blood cell differentiation are engraved into the chromatin of lineage-specific genes and that such chromatin changes are implemented before cell lineage specification.
为了深入了解细胞命运决定所涉及的真正分子机制,研究此类决定发生处的基因激活分子细节非常重要,即单个基因的染色质结构水平。在本文所呈现的研究中,我们解决了这个问题,并研究了来自转基因小鼠骨髓的原代髓细胞分化过程中鸡溶菌酶基因座处活性染色质结构的动态发展。通过体内足迹法,我们发现稳定的增强子复合体组装和高水平基因表达是细胞分化中的晚期事件。然而,甚至在基因表达开始和稳定的转录因子结合之前,就观察到了特定的染色质改变。这包括DNA拓扑结构的变化以及位于关键转录因子结合位点核心而非侧翼DNA中的CpG二核苷酸的选择性去甲基化。这些结果有力地支持了这样一种观点,即指导血细胞分化的表观遗传程序被铭刻在谱系特异性基因的染色质中,并且这种染色质变化在细胞谱系特化之前就已发生。