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MLL-ENL导致髓单核细胞分化的可逆且依赖于Myc的阻滞。

MLL-ENL causes a reversible and myc-dependent block of myelomonocytic cell differentiation.

作者信息

Schreiner S, Birke M, García-Cuéllar M P, Zilles O, Greil J, Slany R K

机构信息

Department of Genetics, University Erlangen, 91058 Erlangen, Germany.

出版信息

Cancer Res. 2001 Sep 1;61(17):6480-6.

Abstract

The translocation t(11;19) is a recurrent feature of a subgroup of acute leukemias occurring in infants. This event fuses the genes MLL and ENL and creates the leukemogenic oncoprotein MLL-ENL. We studied the effect of retroviral MLL-ENL expression in primary mouse hematopoietic cells and show here that MLL-ENL requires the oncoprotein Myc to establish a reversible differentiation arrest of a myelomonocytic precursor population. MLL-ENL-transduced cells proliferated as immature myeloid cells in the presence of interleukin 3. The addition of granulocyte colony-stimulating factor reversed the maturation block set by MLL-ENL and induced the development of mature granulocytes and macrophages accompanied by growth arrest. Gene expression analysis indicated a down-regulation of the proto-oncogene c-myc and of several c-myc target genes during granulocyte colony-stimulating factor-mediated differentiation. The role of c-myc in the MLL-ENL transformation pathway was tested by modulating the effective Myc protein concentrations in MLL-ENL transduced cells. Cotransduction of dominant-negative Myc neutralized the MLL-ENL effect and precluded transformation. In contrast, constitutive expression of Myc cooperated with MLL-ENL and caused the transformation of a cell population with an irreversible maturation arrest.

摘要

易位t(11;19)是婴儿急性白血病亚组的一个常见特征。该事件使MLL和ENL基因融合,产生致白血病癌蛋白MLL-ENL。我们研究了逆转录病毒MLL-ENL在原代小鼠造血细胞中的表达效果,在此表明MLL-ENL需要癌蛋白Myc来建立骨髓单核细胞前体群体的可逆分化停滞。在白细胞介素3存在的情况下,MLL-ENL转导的细胞作为未成熟髓样细胞增殖。添加粒细胞集落刺激因子可逆转MLL-ENL设置的成熟阻滞,并诱导成熟粒细胞和巨噬细胞的发育,同时伴有生长停滞。基因表达分析表明,在粒细胞集落刺激因子介导的分化过程中,原癌基因c-myc和几个c-myc靶基因表达下调。通过调节MLL-ENL转导细胞中有效的Myc蛋白浓度,测试了c-myc在MLL-ENL转化途径中的作用。共转导显性负性Myc可中和MLL-ENL的作用并阻止转化。相反,Myc的组成型表达与MLL-ENL协同作用,导致细胞群体发生转化并伴有不可逆的成熟停滞。

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