Wunderlich Mark, Krejci Ondrej, Wei Junping, Mulloy James C
Division of Experimental Hematology, Cincinnati Children's Hospital Medical Center, University of Cincinnati College of Medicine, Cincinnati, OH 45226, USA.
Blood. 2006 Sep 1;108(5):1690-7. doi: 10.1182/blood-2005-12-012773. Epub 2006 May 2.
The t(16:16) and inv(16) are associated with FAB M4Eo myeloid leukemias and result in fusion of the CBFB gene to the MYH11 gene (encoding smooth muscle myosin heavy chain [SMMHC]). Knockout of CBFbeta causes embryonic lethality due to lack of definitive hematopoiesis. Although knock-in of CBFB-MYH11 is not sufficient to cause disease, expression increases the incidence of leukemia when combined with cooperating events. Although mouse models are valuable tools in the study of leukemogenesis, little is known about the contribution of CBFbeta-SMMHC to human hematopoietic stem and progenitor cell self-renewal. We introduced the CBFbeta-MYH11 cDNA into human CD34+ cells via retroviral transduction. Transduced cells displayed an initial repression of progenitor activity but eventually dominated the culture, resulting in the proliferation of clonal populations for up to 7 months. Long-term cultures displayed a myelomonocytic morphology while retaining multilineage progenitor activity and engraftment in NOD/SCID-B2M-/- mice. Progenitor cells from long-term cultures showed altered expression of genes defining inv(16) identified in microarray studies of human patient samples. This system will be useful in examining the effects of CBFbeta-SMMHC on gene expression in the human preleukemic cell, in characterizing the effect of this oncogene on human stem cell biology, and in defining its contribution to the development of leukemia.
t(16:16)和inv(16)与FAB M4Eo髓系白血病相关,导致CBFB基因与MYH11基因(编码平滑肌肌球蛋白重链[SMMHC])融合。敲除CBFβ会因缺乏定型造血而导致胚胎致死。虽然敲入CBFB-MYH11不足以引发疾病,但与协同事件联合时,其表达会增加白血病的发病率。尽管小鼠模型是白血病发生研究中的重要工具,但关于CBFβ-SMMHC对人类造血干细胞和祖细胞自我更新的作用知之甚少。我们通过逆转录病毒转导将CBFβ-MYH11 cDNA导入人CD34+细胞。转导细胞最初表现出祖细胞活性的抑制,但最终在培养物中占主导地位,导致克隆群体增殖长达7个月。长期培养物呈现髓单核细胞形态,同时保留多谱系祖细胞活性并能植入NOD/SCID-B2M-/-小鼠体内。长期培养物中的祖细胞显示出在人类患者样本微阵列研究中鉴定出的定义inv(16)的基因表达改变。该系统将有助于研究CBFβ-SMMHC对人类白血病前期细胞基因表达的影响,表征这种癌基因对人类干细胞生物学的作用,并确定其在白血病发生中的作用。