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首页> 外文期刊>Oncogene >MLL-AF9 oncogene expression affects cell growth but not terminal differentiation and is downregulated during monocyte|[ndash]|macrophage maturation in AML-M5 THP-1 cells
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MLL-AF9 oncogene expression affects cell growth but not terminal differentiation and is downregulated during monocyte|[ndash]|macrophage maturation in AML-M5 THP-1 cells

机译:MLL-AF9癌基因表达影响细胞生长但不是末端分化,并且在AML-M5 THP-1细胞中单核细胞成熟期间下调

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The MLL-AF9 oncogene – one of the most frequent MLL/HRX/ALL-1 rearrangements found in infantile and therapy-related leukaemias – originates from t(9;11)(p22;q23) and is mainly associated with monocytic acute myeloid leukaemia (AML-M5; FAB-classification). Here, we investigated the MLL-AF9 function by means of an antisense phosphorothioate-oligodeoxyribonucleotide (MLL-AF9-PS-ODNas) using the THP-1 AML-M5 cell line carrying t(9;11). Having confirmed that MLL-AF9-PS-ODNas induces strong inhibition of THP-1 cell growth, but only a moderate increase in apoptosis, we found that MLL-AF9-PS-ODNas did not induce morpho-functional terminal differentiation or restore M-CSF-, G-CSF- or GM-CSF-induced differentiation. Moreover, THP-1 cells showed the same phenotype with/without MLL-AF9-PS-ODNas. In THP-1 cells differentiated to mature macrophage-like cells by PMA/TPA or ATRA, MLL-AF9 expression was downregulated. Thus, in the monocytic lineage, MLL-AF9 may be expressed only in early phases and can induce deregulated amplification in both nonmalignant and malignant cells, maintaining the monocytic phenotype without blocking final maturation. Our findings suggest that: (1) as well as directly promoting cell growth, MLL-AF9 may also indirectly determine phenotype; (2) other leukaemogenic mutations associated with MLL-AF9-related leukaemias should be searched for mainly in processes of resistance to apoptosis (where MLL-AF9 may play only a limited role) and differentiation blockage (where MLL-AF9 may play no role).
机译:MLL-AF9 oncogene - 婴儿和治疗相关的白血病中发现的最常见的MLL / HRX /全-1重排 - 源自T(9; 11)(P22; Q23),主要与单核细胞急性髓性白血病有关(AML-M5; FAB分类)。在这里,我们通过使用THP-1AML-M5细胞系携带T(9; 11)来研究借助于反义的硫代磷酸酯 - 寡核苷酸(MLL-AF9-PS-ODNAS)的MLL-AF9功能。已经证实MLL-AF9-PS-ODNAS诱导强烈抑制THP-1细胞生长,但只有中凋亡的中度增加,我们发现MLL-AF9-PS-ODNA没有诱导Morpho功能末端分化或恢复M- CSF-,G-CSF或GM-CSF诱导的分化。此外,THP-1细胞显示出与/没有MLL-AF9-PS-ODNA的相同表型。在通过PMA / TPA或ATRA分化为成熟巨噬细胞样细胞的THP-1细胞中,下调MLL-AF9表达。因此,在单核细胞谱系中,MLL-AF9可以仅在早期阶段表达,并且可以在非开始和恶性细胞中诱导病变扩增,维持单核细胞表型而不阻止最终成熟。我们的研究结果表明:(1)以及直接促进细胞生长,MLL-AF9也可以间接确定表型; (2)应搜索与MLL-AF9相关的菌丝相关的其他白细胞生成突变,主要是在对凋亡的抵抗过程中(其中MLL-AF9也可能仅播放有限的角色)和分化堵塞(其中MLL-AF9可能播放没有角色) 。

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