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一种依赖Mll的Hox程序驱动造血祖细胞扩增。

An Mll-dependent Hox program drives hematopoietic progenitor expansion.

作者信息

Ernst Patricia, Mabon Meghann, Davidson Alan J, Zon Leonard I, Korsmeyer Stanley J

机构信息

Howard Hughes Medical Institute, Harvard Medical School, Boston, Massachusetts, USA.

出版信息

Curr Biol. 2004 Nov 23;14(22):2063-9. doi: 10.1016/j.cub.2004.11.012.

Abstract

Chromosomal translocations disrupting the Mixed lineage leukemia (Mll) gene result in leukemia, with aberrant expression of some native Mll target genes (reviewed in). The Mll gene encodes a Trithorax-group chromatin regulator that is essential for the development of hematopoietic stem cells (HSCs) during embryogenesis. Like Trithorax, MLL positively regulates clustered homeodomain or Hox genes, yet the role of Hox genes collectively in the development of the mammalian hematopoietic system has been difficult to ascertain because of redundancy among Hox paralogs. Here, we show that in the absence of MLL, early hematopoietic progenitors develop despite reduced expression of HoxA, HoxB, and HoxC genes. However, these progenitors exhibit a marked reduction in their ability to generate hematopoietic colonies, a subsequent process requiring cell division and differentiation. Reactivation of a subset of Hox genes or, remarkably, reexpression of a single Hox gene in Mll-deficient progenitors rescued hematopoietic-colony frequency and growth. In contrast, expression of other MLL target genes such as Pitx2 or expression of anti-apoptotic BCL-2 failed to rescue hematopoietic-colony frequency. Furthermore, our results highlight a shared function of Hox proteins at this point in the development of the hematopoietic system.

摘要

破坏混合谱系白血病(Mll)基因的染色体易位会导致白血病,同时一些天然Mll靶基因会异常表达(相关综述)。Mll基因编码一种三胸复合物染色质调节因子,它在胚胎发育过程中对造血干细胞(HSCs)的发育至关重要。与三胸复合物一样,MLL正向调节成簇的同源结构域或Hox基因,但由于Hox旁系同源基因之间存在冗余,Hox基因在哺乳动物造血系统发育中的总体作用一直难以确定。在这里,我们表明,在缺乏MLL的情况下,尽管HoxA、HoxB和HoxC基因的表达降低,早期造血祖细胞仍能发育。然而,这些祖细胞产生造血集落的能力显著降低,而这一后续过程需要细胞分裂和分化。在Mll缺陷祖细胞中,部分Hox基因的重新激活,或者更显著的是单个Hox基因的重新表达,挽救了造血集落频率和生长。相比之下,其他MLL靶基因如Pitx2的表达或抗凋亡BCL-2的表达未能挽救造血集落频率。此外,我们的结果突出了Hox蛋白在造血系统发育这一阶段的共同功能。

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