首页> 外文期刊>Journal of cellular biochemistry. >Expression and DNA-binding activity of MYCN/Max and Mnt/Max during induced differentiation of human neuroblastoma cells.
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Expression and DNA-binding activity of MYCN/Max and Mnt/Max during induced differentiation of human neuroblastoma cells.

机译:在人成神经细胞瘤细胞诱导分化过程中,MYCN / Max和Mnt / Max的表达和DNA结合活性。

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Amplification of MYCN is one of the most important prognostic markers for neuroblastoma and is correlated with rapid tumor progression and poor prognosis. MYCN belongs to the Myc/Max/Mad/Mnt network of proteins that regulate proliferation, apoptosis, and differentiation. It is well established that MYCN is downregulated during induced differentiation of neuroblastoma cells carrying an amplified MYCN gene, but very little is known about other components of the network, i.e., the Max, Mad, and Mnt proteins, during this process. In this study we show that Mad and Mnt expression was only modestly regulated in differentiating SK-N-BE(2) neuroblastoma cells, while MYCN was rapidly downregulated. This downregulation was reflected in a decreased MYCN/Max DNA-binding activity while the Mnt/Max binding did not change during differentiation. In parallel experiments we also analyzed the Myc/Max/Mad expression and DNA binding capacity during induced differentiation in the MYCN single copy neuroblastoma cell line SH-SY5Y. In this cell line only modest changes in expression of the components of the MYCN/Max/Mad/Mnt network was detected, but since the cell line expresses relatively low levels of MYCN and c-Myc, these changes might be of functional significance. Cell cycle analyses of SK-N-BE(2) demonstrated an increase in the G1-phase fraction after RA-treatment. These data show that the decreased MYCN expression and MYCN DNA-binding is correlated with retarded cell cycle progression. Furthermore, when Mad1 or Mnt was overexpressed in SK-N-BE(2) cells they retained the capacity to differentiate, underscoring the notion that MYCN downregulation, and not changes in Mad/Mnt expression, is essential for neuroblastoma cell differentiation.
机译:MYCN的扩增是神经母细胞瘤最重要的预后标志之一,并且与肿瘤的快速进展和不良预后相关。 MYCN属于调节增殖,凋亡和分化的蛋白质的Myc / Max / Mad / Mnt网络。公认的是,MYCN在携带扩增的MYCN基因的成神经细胞瘤细胞的诱导分化过程中被下调,但是在此过程中对网络的其他成分,即Max,Mad和Mnt蛋白知之甚少。在这项研究中,我们表明Mad和Mnt表达仅在分化SK-N-BE(2)神经母细胞瘤细胞中受到适度调节,而MYCN则迅速下调。这种下调反映为降低的MYCN / Max DNA结合活性,而Mnt / Max结合在分化过程中没有改变。在平行实验中,我们还分析了MYCN单拷贝神经母细胞瘤细胞系SH-SY5Y诱导分化期间的Myc / Max / Mad表达和DNA结合能力。在该细胞系中,仅检测到MYCN / Max / Mad / Mnt网络组分表达的适度变化,但是由于该细胞系表达相对较低水平的MYCN和c-Myc,这些变化可能具有功能上的意义。 SK-N-BE(2)的细胞周期分析表明,RA治疗后G1期分数增加。这些数据表明,降低的MYCN表达和MYCN DNA结合与细胞周期进程延迟有关。此外,当Mad1或Mnt在SK-N-BE(2)细胞中过表达时,它们保留了分化的能力,从而强调了MYCN下调而不是Mad / Mnt表达改变对于成神经细胞瘤细胞分化必不可少的观念。

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