Walter Korden, Bonifer Constanze, Tagoh Hiromi
Section of Experimental Haematology, Leeds Institute of Molecular Medicine, University of Leeds, St James's University Hospital, Leeds, United Kingdom.
Blood. 2008 Sep 1;112(5):1673-82. doi: 10.1182/blood-2008-02-142786. Epub 2008 Jun 13.
Low-level expression of multiple lineage-specific genes is a hallmark of hematopoietic stem cells (HSCs). HSCs predominantly express genes specific for the myeloid or megakaryocytic-erythroid lineages, whereas the transcription of lymphoid specific genes appears to begin after lymphoid specification. It has been demonstrated for a number of genes that epigenetic priming occurs before gene expression and lineage specification; however, little is known about how epigenetic priming of lymphoid genes is regulated. To address the question of how B cell-restricted expression is established, we studied activation of the Cd19 gene during hematopoietic development. We identified a B cell-specific upstream enhancer and showed that the developmental regulation of Cd19 expression involves precisely coordinated alterations in transcription factor binding and chromatin remodeling at Cd19 cis-regulatory elements. In multipotent progenitor cells, Cd19 chromatin is first remodeled at the upstream enhancer, and this remodeling is associated with binding of E2A. This is followed by the binding of EBF and PAX5 during B-cell differentiation. The Cd19 promoter is transcriptionally activated only after PAX5 binding. Our experiments give important mechanistic insights into how widely expressed and B lineage-specific transcription factors cooperate to mediate the developmental regulation of lymphoid genes during hematopoiesis.
多种谱系特异性基因的低水平表达是造血干细胞(HSCs)的一个标志。造血干细胞主要表达髓系或巨核细胞 - 红系谱系特异性的基因,而淋巴系特异性基因的转录似乎在淋巴系特化之后才开始。对于许多基因而言,已经证明表观遗传预激发发生在基因表达和谱系特化之前;然而,关于淋巴系基因的表观遗传预激发是如何被调控的却知之甚少。为了解决B细胞限制性表达是如何建立的问题,我们研究了造血发育过程中Cd19基因的激活。我们鉴定出了一个B细胞特异性的上游增强子,并表明Cd19表达的发育调控涉及Cd19顺式调控元件处转录因子结合和染色质重塑的精确协调改变。在多能祖细胞中,Cd19染色质首先在上游增强子处发生重塑,这种重塑与E2A的结合相关。随后在B细胞分化过程中EBF和PAX5结合。Cd19启动子仅在PAX5结合后才被转录激活。我们的实验为广泛表达的和B谱系特异性的转录因子如何在造血过程中协同介导淋巴系基因的发育调控提供了重要的机制见解。