Medical Research Council Molecular Haematology Unit, John Radcliffe Hospital, Oxford, UK.
Blood. 2010 Apr 29;115(17):3463-71. doi: 10.1182/blood-2009-07-232876. Epub 2010 Feb 12.
Precise spatiotemporal control of Gata1 expression is required in both early hematopoietic progenitors to determine erythroid/megakaryocyte versus granulocyte/monocyte lineage output and in the subsequent differentiation of erythroid cells and megakaryocytes. An enhancer element upstream of the mouse Gata1 IE (1st exon erythroid) promoter, mHS-3.5, can direct both erythroid and megakaryocytic expression. However, loss of this element ablates only megakaryocytes, implying that an additional element has erythroid specificity. Here, we identify a double DNaseI hypersensitive site, mHS-25/6, as having erythroid but not megakaryocytic activity in primary cells. It binds an activating transcription factor complex in erythroid cells where it also makes physical contact with the Gata1 promoter. Deletion of mHS-25/6 or mHS-3.5 in embryonic stem cells has only a modest effect on in vitro erythroid differentiation, whereas loss of both elements ablates both primitive and definitive erythropoiesis with an almost complete loss of Gata1 expression. Surprisingly, Gata2 expression was also concomitantly low, suggesting a more complex interaction between these 2 factors than currently envisaged. Thus, whereas mHS-3.5 alone is sufficient for megakaryocytic development, mHS-3.5 and mHS-25/6 collectively regulate erythroid Gata1 expression, demonstrating lineage-specific differences in Gata1 cis-element use important for development of these 2 cell types.
精确的时空控制 Gata1 的表达是必需的在早期造血祖细胞来确定红细胞/巨核细胞与粒细胞/单核细胞系输出和随后的红细胞和巨核细胞的分化。一个增强子元件上游的鼠标 Gata1 IE (1 号外显子红细胞) 启动子,mHS-3.5,可直接指导红细胞和巨核细胞表达。然而,这种元素的缺失仅巨核细胞,这意味着一个额外的元素具有红细胞特异性。在这里,我们确定了一个双 DNaseI 超敏位点,mHS-25/6,作为具有红细胞但不是巨核细胞活性在原代细胞。它结合了一个激活转录因子复合物在红细胞细胞在那里它还与 Gata1 启动子物理接触。删除 mHS-25/6 或 mHS-3.5 在胚胎干细胞中只有适度的影响在体外红细胞分化,而失去这两个元素都消融原始和明确的红细胞生成与几乎完全丧失 Gata1 的表达。令人惊讶的是,Gata2 的表达也同时低,这表明这些 2 个因素之间的相互作用比目前设想的更为复杂。因此,虽然 mHS-3.5 本身足以用于巨核细胞发育,mHS-3.5 和 mHS-25/6 共同调节红细胞 Gata1 的表达,表明在这些 2 种细胞类型的发展中的 Gata1 顺式元件使用的谱系特异性差异。