Kandilci Ayten, Grosveld Gerard C
Department of Genetics and Tumor Cell Biology, St Jude Children's Research Hospital, Memphis, TN 38105, USA.
Blood. 2009 Aug 20;114(8):1596-606. doi: 10.1182/blood-2009-02-205443. Epub 2009 Jun 26.
Forced expression of MN1 in primitive mouse hematopoietic cells causes acute myeloid leukemia and impairs all-trans retinoic acid-induced granulocytic differentiation. Here, we studied the effects of MN1 on myeloid differentiation and proliferation using primary human CD34(+) hematopoietic cells, lineage-depleted mouse bone marrow cells, and bipotential (granulocytic/monocytic) human acute myeloid leukemia cell lines. We show that exogenous MN1 stimulated the growth of CD34(+) cells, which was accompanied by enhanced survival and increased cell cycle traverse in cultures supporting progenitor cell growth. Forced MN1 expression impaired both granulocytic and monocytic differentiation in vitro in primary hematopoietic cells and acute myeloid leukemia cell lines. Endogenous MN1 expression was higher in human CD34(+) cells compared with both primary and in vitro-differentiated monocytes and granulocytes. Microarray and real-time reverse-transcribed polymerase chain reaction analysis of MN1-overexpressing CD34(+) cells showed down-regulation of CEBPA and its downstream target genes. Reintroduction of conditional and constitutive CEBPA overcame the effects of MN1 on myeloid differentiation and inhibited MN1-induced proliferation in vitro. These results indicate that down-regulation of CEBPA activity contributes to MN1-modulated proliferation and impaired myeloid differentiation of hematopoietic cells.
在原始小鼠造血细胞中强制表达MN1会导致急性髓系白血病,并损害全反式维甲酸诱导的粒细胞分化。在此,我们使用原代人CD34(+)造血细胞、谱系清除的小鼠骨髓细胞以及双潜能(粒细胞/单核细胞)人急性髓系白血病细胞系,研究了MN1对髓系分化和增殖的影响。我们发现,外源性MN1刺激了CD34(+)细胞的生长,这伴随着在支持祖细胞生长的培养物中存活率提高和细胞周期进程加快。在原代造血细胞和急性髓系白血病细胞系中,强制表达MN1在体外损害了粒细胞和单核细胞的分化。与原代及体外分化的单核细胞和粒细胞相比,人CD34(+)细胞中内源性MN1的表达更高。对过表达MN1的CD34(+)细胞进行微阵列和实时逆转录聚合酶链反应分析,结果显示CEBPA及其下游靶基因表达下调。重新引入条件性和组成性CEBPA可克服MN1对髓系分化的影响,并在体外抑制MN1诱导的增殖。这些结果表明,CEBPA活性的下调促成了MN1调节的造血细胞增殖及髓系分化受损。