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MLL-AF4融合癌蛋白的分级表达对细胞周期的调控

Modulation of cell cycle by graded expression of MLL-AF4 fusion oncoprotein.

作者信息

Caslini C, Serna A, Rossi V, Introna M, Biondi A

机构信息

Centro Ricerche M Tettamanti, Clinica Pediatrica Università Milano-Bicocca, Monza, Italy.

出版信息

Leukemia. 2004 Jun;18(6):1064-71. doi: 10.1038/sj.leu.2403321.

DOI:10.1038/sj.leu.2403321
PMID:14990976
Abstract

Acute lymphoblastic leukemia (ALLs) expressing MLL-AF4, the fusion product of t(4;11)(q21;q23), show marked leucocytosis and extramedullary disease in multiple organs, respond poorly to chemotherapy and have poor prognosis. In vitro, leukemic cells with the t(4;11) show resistance to serum deprivation-induced or interferon gamma-regulated CD95-mediated apoptosis. In addition, t(4;11) cells have prolonged doubling time and lower percentage of cells in cycle compared to non-t(4;11) B lineage cell lines. In this study, we examine the time- and level-dependent effects of MLL-AF4 conditional expression on cell cycle and differentiation of myelomonocytic leukemia cell line U937. By varying the concentration of tetracycline in growth media, we found that increasing levels of MLL-AF4 expression result in a progressive decrease in growth rate and fraction of S phase cells, paralleled by an increase in percentage of cells expressing CD11b. Our results demonstrate a dosage-dependent effect of MLL-AF4 fusion oncoprotein on cell cycle progression, with increasing expression levels resulting in the accumulation in G1, prolonged doubling time, both findings that might be responsible for the increased resistance to etoposide-mediated cytotoxicity. We propose the cell cycle control exerted by MLL-AF4 may be responsible of resistance to cell-death promoting stimuli in leukemia carrying the t(4;11) translocation.

摘要

表达MLL-AF4(t(4;11)(q21;q23)的融合产物)的急性淋巴细胞白血病(ALL)表现出明显的白细胞增多和多器官髓外病变,对化疗反应不佳且预后不良。在体外,具有t(4;11)的白血病细胞对血清剥夺诱导的或干扰素γ调节的CD95介导的凋亡具有抗性。此外,与非t(4;11) B系细胞系相比,t(4;11)细胞的倍增时间延长且处于细胞周期中的细胞百分比更低。在本研究中,我们研究了MLL-AF4条件性表达对髓单核细胞白血病细胞系U937细胞周期和分化的时间和水平依赖性影响。通过改变生长培养基中四环素的浓度,我们发现MLL-AF4表达水平的增加导致生长速率和S期细胞比例逐渐降低,同时表达CD11b的细胞百分比增加。我们的结果证明了MLL-AF4融合癌蛋白对细胞周期进程的剂量依赖性作用,表达水平的增加导致细胞在G1期积累、倍增时间延长,这两个发现可能是对依托泊苷介导的细胞毒性抗性增加的原因。我们提出MLL-AF4施加的细胞周期控制可能是携带t(4;11)易位的白血病中对促进细胞死亡刺激产生抗性的原因。

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