Moore Malcolm A S, Dorn David C, Schuringa Jan Jacob, Chung Ki Young, Morrone Giovanni
Moore Laboratory, Memorial Sloan-Kettering Cancer Center, New York, NY 10021, USA.
Exp Hematol. 2007 Apr;35(4 Suppl 1):105-16. doi: 10.1016/j.exphem.2007.01.018.
To model human leukemogenesis by transduction of human hematopoietic stem cells (HSC) with genes associated with leukemia and expressed in leukemic stem cells.
Constitutive activation of Flt3 (Flt3-ITD) has been reported in 25 to 30% of patients with acute myeloid leukemia (AML). Retroviral vectors expressing constitutively activated Flt3 and STAT5A were used to transduce human cord blood CD34(+) cells and HSC cell self-renewal and differentiation were evaluated.
We have demonstrated that retroviral transduction of Flt3 mutations into CD34(+) cells enhanced HSC self-renewal as measured in vitro in competitive stromal coculture and limiting-dilution week-2 cobblestone (CAFC) assays. Enhanced erythropoiesis and decreased myelopoiesis were noted together with strong activation of STAT5A. Consequently, transduction studies were undertaken with a constitutively active mutant of STAT5A (STAT5A[1( *)6]) and here also a marked, selective expansion of transduced CD34(+) cells was noted, with a massive increase in self-renewing CAFC detectable at both 2 and 5 weeks of stromal coculture. Differentiation was biased to erythropoiesis, including erythropoietin independence, with myeloid maturation inhibition. The observed phenotypic changes correlated with differential gene expression, with a number of genes differentially regulated by both the Flt3 and STAT5A mutants. These included upregulation of genes involved in erythropoiesis and downregulation of genes involved in myelopoiesis. The phenotype of week-2 self-renewing CAFC also characterized primary Flt3-ITD(+) AML bone marrow samples. Isolation of leukemic stem cells (LSC) with a CD34(+), CD38(-), HLA-DR(-) phenotype was undertaken with Flt3-ITD(+) AML samples resulting in co-purification of early CAFC. Gene expression of LSC relative to the bulk leukemic population revealed upregulation of homeobox genes (HOXA9, HOXA5) implicated in leukemogenesis, and hepatic leukemia factor (HLF) involved in stem cell proliferation.
Myeloid leukemogenesis is a multi-stage process that can involve constitutively activated receptors and downstream pathways involving STAT5, HOX genes, and HLF.
通过用与白血病相关且在白血病干细胞中表达的基因转导人造血干细胞(HSC)来模拟人类白血病发生过程。
据报道,25%至30%的急性髓系白血病(AML)患者存在Flt3的组成性激活(Flt3-ITD)。使用表达组成性激活的Flt3和STAT5A的逆转录病毒载体转导人脐血CD34(+)细胞,并评估HSC的自我更新和分化情况。
我们已证明,将Flt3突变通过逆转录病毒转导到CD34(+)细胞中可增强HSC的自我更新能力,这在竞争性基质共培养和有限稀释第2周鹅卵石区形成细胞(CAFC)试验的体外检测中得到证实。观察到红细胞生成增强、髓细胞生成减少,同时STAT5A被强烈激活。因此,我们用组成性激活的STAT5A突变体(STAT5A[1(* )6])进行了转导研究,同样观察到转导的CD34(+)细胞有明显的选择性扩增,在基质共培养2周和5周时均可检测到自我更新的CAFC大量增加。分化偏向于红细胞生成,包括不依赖促红细胞生成素,同时髓系成熟受到抑制。观察到的表型变化与基因表达差异相关,Flt3和STAT5A突变体均对许多基因进行了不同调控。这些基因包括参与红细胞生成的基因上调以及参与髓细胞生成的基因下调。第2周自我更新的CAFC的表型也与原发性Flt3-ITD(+) AML骨髓样本的特征相符。对Flt3-ITD(+) AML样本进行具有CD34(+)、CD38(-)、HLA-DR(-)表型的白血病干细胞(LSC)分离,结果早期CAFC被共同纯化。LSC相对于白血病总体细胞群的基因表达显示,与白血病发生相关的同源盒基因(HOXA9、HOXA5)以及参与干细胞增殖的肝白血病因子(HLF)上调。
髓系白血病发生是一个多阶段过程,可能涉及组成性激活的受体以及涉及STAT5、HOX基因和HLF的下游通路。