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Overexpression of HOXA10 in murine hematopoietic cells perturbs both myeloid and lymphoid differentiation and leads to acute myeloid leukemia.

机译:小鼠造血细胞中HOXA10的过表达扰乱了髓样和淋巴样分化并导致急性髓样白血病。

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摘要

Multiple members of the A, B, and C clusters of Hox genes are expressed in hematopoietic cells. Several of these Hox genes have been found to display distinctive expression patterns, with genes located at the 3' side of the clusters being expressed at their highest levels in the most primitive subpopulation of human CD34+ bone marrow cells and genes located at the 5' end having a broader range of expression, with downregulation at later stages of hematopoietic differentiation. To explore if these patterns reflect different functional activities, we have retrovirally engineered the overexpression of a 5'-located gene, HOXA10, in murine bone marrow cells and demonstrate effects strikingly different from those induced by overexpression of a 3'-located gene, HOXB4. In contrast to HOXB4, which causes selective expansion of primitive hematopoietic cells without altering their differentiation, overexpression of HOXA10 profoundly perturbed myeloid and B-lymphoid differentiation. The bone marrow of mice reconstituted with HOXA10-transduced bone marrow cells contained in high frequency a unique progenitor cell with megakaryocytic colony-forming ability and was virtually devoid of unilineage macrophage and pre-B-lymphoid progenitor cells derived from the transduced cells. Moreover, and again in contrast to HOXB4, a significant proportion of HOXA10 mice developed a transplantable acute myeloid leukemia with a latency of 19 to 50 weeks. These results thus add to recognition of Hox genes as important regulators of hematopoiesis and provide important new evidence of Hox gene-specific functions that may correlate with their normal expression pattern.
机译:Hox基因的A,B和C簇的多个成员在造血细胞中表达。已发现这些Hox基因中的几个具有独特的表达模式,位于簇3'侧的基因在人类CD34 +骨髓细胞最原始的亚群中以最高水平表达,而位于5'端的基因具有更广泛的表达范围,在造血分化的后期会下调。为了探索这些模式是否反映了不同的功能活性,我们对鼠骨髓细胞中的5'-定位基因HOXA10的过表达进行了逆转录病毒改造,并证明了其与3'-定位基因HOXB4的过表达所诱导的效果截然不同。与HOXB4引起原始造血细胞的选择性扩增而不改变其分化的相反,HOXA10的过表达深刻影响了骨髓和B淋巴样的分化。用HOXA10转导的骨髓细胞重组后的小鼠骨髓,该细胞以高频率包含具有巨核细胞集落形成能力的独特祖细胞,并且实际上没有来自转导细胞的单系巨噬细胞和前B淋巴样祖细胞。而且,与HOXB4再次相反,很大比例的HOXA10小鼠发生了可移植的急性髓细胞性白血病,潜伏期为19至50周。因此,这些结果增加了对Hox基因作为造血功能重要调节剂的认识,并提供了可能与它们的正常表达模式相关的Hox基因特异性功能的重要新证据。

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