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Expression of ribosomal protein S5 cloned gene during differentiation and apoptosis in murine erythroleukemia (MEL) cells.

机译:核糖体蛋白S5克隆基因在鼠红细胞白血病(MEL)细胞分化和凋亡过程中的表达。

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Murine erythroleukemia (MEL) cells have been used as a suitable model system for studying cellular and molecular mechanisms of erythroid differentiation. In an effort to isolate and characterize genes whose expression change during differentiation, we cloned and sequenced a cDNA of 715 bp (rpS5) from a MEL cDNA library. The cloned mouse cDNA showed significant degree of structural homology in both DNA and protein level to known human and rat genes that encode the S5 proteins of 40S ribosomal subunit. The use of 715-bp cDNA as probe revealed the presence of an RNA transcript in the cytoplasm of MEL and human neuroectodermal RD/TE-671 cells. The steady-state accumulation level of this RNA transcript decreased upon induction of differentiation of both cell lines by treatment with DMSO and UDP-4, two structurally different inducers. Blockade of MEL cell differentiation by the inhibitor N6-methyladenosine preserved the constitutive expression of the rpS5 gene. DNA methylation analysis at CCGG sites located at the rpS5 gene locus in undifferentiated and differentiated MEL cells revealed that the suppression of the rpS5 gene during MEL cell differentiation is not related to any change in methylation at these sites. Moreover, the rpS5 gene continued to be expressed in cells undergoing serum-deprived apoptosis, like in control untreated cells. Therefore, we conclude that there may be a disparate pattern of expression of the rpS5 gene in differentiating and apoptotic cells. These data can be valuable in understanding the role of ribosomal proteins during differentiation and cell death (apoptosis) of neoplastic cells, although there is no experimental evidence that the suppression of the rpS5 gene is related mechanistically to the induction of differentiation. It may well be considered as part of the differentiation process.
机译:鼠红细胞白血病(MEL)细胞已用作研究红系分化的细胞和分子机制的合适模型系统。为了分离和表征分化过程中表达变化的基因,我们从MEL cDNA文库克隆并测序了715 bp的cDNA(rpS5)。克隆的小鼠cDNA与编码40S核糖体亚基S5蛋白的已知人类和大鼠基因在DNA和蛋白质水平上均显示出高度的结构同源性。 715-bp cDNA作为探针的使用揭示了MEL和人神经外胚层RD / TE-671细胞的细胞质中存在RNA转录本。通过用两种结构不同的诱导剂DMSO和UDP-4处理诱导两种细胞系分化后,此RNA转录本的稳态积累水平降低。 N6-甲基腺苷抑制剂可阻止MEL细胞分化,从而保留了rpS5基因的组成型表达。在未分化和分化的MEL细胞中位于rpS5基因位点的CCGG位点的DNA甲基化分析表明,在MEL细胞分化过程中rpS5基因的抑制与这些位点甲基化的任何变化无关。此外,rpS5基因继续在经历血清剥夺的细胞凋亡的细胞中表达,就像在未处理的对照细胞中一样。因此,我们得出结论,在分化和凋亡细胞中,可能存在rpS5基因表达的不同模式。这些数据对于了解核糖体蛋白在肿瘤细胞分化和细胞死亡(凋亡)过程中的作用可能是有价值的,尽管没有实验证据表明rpS5基因的抑制与分化的诱导机制相关。它很可能被视为分化过程的一部分。

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