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在缺乏Hoxa7或Hoxa9的情况下,MLL-GAS7诱导造血祖细胞发生白血病转化。

Leukemic transformation of hematopoietic progenitors by MLL-GAS7 in the absence of Hoxa7 or Hoxa9.

作者信息

So Chi Wai, Karsunky Holger, Wong Piu, Weissman Irving L, Cleary Michael L

机构信息

Department of Pathology, Stanford University School of Medicine, Stanford 94305, USA.

出版信息

Blood. 2004 Apr 15;103(8):3192-9. doi: 10.1182/blood-2003-10-3722. Epub 2003 Dec 30.

Abstract

Differential expression of Hox genes is associated with normal hematopoiesis, whereas inappropriate maintenance of Hox gene expression, particularly Hoxa7 and Hoxa9, is a feature of leukemias harboring mixed-lineage leukemia (MLL) mutations. To understand the pathogenic roles of Hox genes in MLL leukemias, we assessed the impact of Hoxa7 or Hoxa9 nullizygosity on hematopoietic progenitor compartments and their susceptibility to MLL-induced leukemias. Selective reductions in the absolute numbers of committed progenitors, but not of hematopoietic stem cells, distinguished Hoxa7- and Hoxa9-deficient mice. Megakaryocytic/erythroid progenitor (MEP) reductions in Hoxa7(-/-) mice correlated with reticulocytosis and thrombocytopenia without anemia. Conversely, Hoxa9(-/-) mice displayed marked lymphopenia and substantial reductions of common lymphoid progenitors (CLPs) and lymphoid precursors, in addition to significant reductions of common myeloid progenitors (CMPs) and granulocyte/monocyte progenitors (GMPs). In retroviral transduction/transplantation assays, Hoxa7- and Hoxa9-deficient progenitors remained susceptible to transformation by MLL-GAS7, which activates MLL through a dimerization-dependent mechanism. However, Hoxa7(-/-) or Hoxa9(-/-) progenitors were less efficient in generating transformed blast colony-forming units (CFUs) in vitro and induced leukemias with longer disease latencies, reduced penetrance, and less mature phenotypes. Thus, Hoxa7 and Hoxa9 contribute to hematopoietic progenitor homeostasis but are not necessary for MLL-GAS7-mediated leukemogenesis, yet they appear to affect disease latency, penetrance, and phenotypes consistent with their critical roles as downstream targets of MLL fusion proteins.

摘要

Hox基因的差异表达与正常造血相关,而Hox基因表达的不适当维持,特别是Hoxa7和Hoxa9,是具有混合谱系白血病(MLL)突变的白血病的一个特征。为了了解Hox基因在MLL白血病中的致病作用,我们评估了Hoxa7或Hoxa9纯合缺失对造血祖细胞区室及其对MLL诱导白血病的易感性的影响。Hoxa7和Hoxa9缺陷小鼠的特征是定向祖细胞的绝对数量选择性减少,但造血干细胞数量未减少。Hoxa7(-/-)小鼠中巨核细胞/红细胞祖细胞(MEP)减少与网织红细胞增多和血小板减少相关,但无贫血。相反,Hoxa9(-/-)小鼠除了常见髓系祖细胞(CMP)和粒细胞/单核细胞祖细胞(GMP)显著减少外,还表现出明显的淋巴细胞减少以及常见淋巴祖细胞(CLP)和淋巴前体细胞的大量减少。在逆转录病毒转导/移植试验中,Hoxa7和Hoxa9缺陷的祖细胞仍然易受MLL-GAS7转化,MLL-GAS7通过二聚化依赖性机制激活MLL。然而,Hoxa7(-/-)或Hoxa9(-/-)祖细胞在体外产生转化的原始集落形成单位(CFU)的效率较低,并且诱导的白血病具有更长的疾病潜伏期、更低的发病率和不太成熟的表型。因此,Hoxa7和Hoxa9有助于造血祖细胞的稳态,但对于MLL-GAS7介导的白血病发生不是必需的,然而它们似乎影响疾病潜伏期、发病率和表型,这与其作为MLL融合蛋白下游靶点的关键作用一致。

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