Bijl Janet, Thompson Alexander, Ramirez-Solis Ramiro, Krosl Jana, Grier David G, Lawrence H Jeffrey, Sauvageau Guy
Laboratory of Molecular Genetics of Stem cells, Institute for Research in Lmmunology and Cancer (IRIC), Montréal, QC, Canada.
Blood. 2006 Jul 1;108(1):116-22. doi: 10.1182/blood-2005-06-2245. Epub 2005 Dec 8.
Overexpression of Hoxb4 in bone marrow cells promotes expansion of hematopoietic stem cell (HSC) populations in vivo and in vitro, indicating that this homeoprotein can activate the genetic program that determines self-renewal. However, this function cannot be solely attributed to Hoxb4 because Hoxb4(-/-) mice are viable and have an apparently normal HSC number. Quantitative polymerase chain reaction analysis showed that Hoxb4(-/-) c-Kit+ fetal liver cells expressed moderately higher levels of several Hoxb cluster genes than control cells, raising the possibility that normal HSC activity in Hoxb4(-/-) mice is due to a compensatory up-regulation of other Hoxb genes. In this study, we investigated the competitive repopulation potential of HSCs lacking Hoxb4 alone, or in conjunction with 8 other Hoxb genes. Our results show that Hoxb4(-/-) and Hoxb1-b9 (-/-) fetal liver cells retain full competitive repopulation potential and the ability to regenerate all myeloid and lymphoid lineages. Quantitative Hox gene expression profiling in purified c-Kit+ Hoxb1-b9(-/-) fetal liver cells revealed an interaction between the Hoxa, b, and c clusters with variation in expression levels of Hoxa4,-a11, and -c4.Together, these studies show a complex network of genetic interactions between several Hox genes in primitive hematopoietic cells and demonstrate that HSCs lacking up to 30% of the active Hox genes remain fully competent.
骨髓细胞中Hoxb4的过表达可促进体内和体外造血干细胞(HSC)群体的扩增,这表明这种同源蛋白可激活决定自我更新的遗传程序。然而,这种功能不能完全归因于Hoxb4,因为Hoxb4基因敲除小鼠能够存活且造血干细胞数量明显正常。定量聚合酶链反应分析表明,Hoxb4基因敲除的c-Kit+胎肝细胞表达的几种Hoxb簇基因水平略高于对照细胞,这增加了Hoxb4基因敲除小鼠中正常造血干细胞活性是由于其他Hoxb基因代偿性上调的可能性。在本研究中,我们研究了单独缺失Hoxb4或与其他8个Hoxb基因一起缺失的造血干细胞的竞争性再增殖潜力。我们的结果表明,Hoxb4基因敲除和Hoxb1-b9基因敲除的胎肝细胞保留了完全的竞争性再增殖潜力以及再生所有髓系和淋巴系的能力。对纯化的c-Kit+Hoxb1-b9基因敲除胎肝细胞进行定量Hox基因表达谱分析,揭示了Hoxa、b和c簇之间的相互作用,以及Hoxa4、-a11和-c4表达水平的变化。总之,这些研究表明原始造血细胞中几个Hox基因之间存在复杂的遗传相互作用网络,并证明缺失高达30%活性Hox基因的造血干细胞仍具有完全功能。