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Interplay between REST and nucleolin transcription factors: a key mechanism in the overexpression of genes upon increased phosphorylation

机译:REST与核仁素转录因子之间的相互作用:磷酸化增加后基因过表达的关键机制

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Non-malignant cells can be transformed via the activation of kinases that control degradation of neural-restrictive silencer factor (REST). Here, we identify a mechanism that contributes to the activation of genes, expression of which is controlled by responsive elements containing overlapping binding sites for REST and nucleolin. We demonstrate that both phosphorylated and non-phosphorylated nucleolin-bound DNA; however, only phosphorylated nucleolin successfully competed with either full-length REST or a REST-derived DNA-binding peptide, REST68, for binding to the overlapping binding sites. We show that this interplay between the two transcription factors regulates the activation of cell survival and immunomodulatory genes in tumors and non-malignant cells with activated protein kinase C, which is accompanied with alterations in cell proliferation and apoptosis. We propose a model for the regulation of these genes, which brings a new insight into the molecular mechanisms that control cellular transformation driven by activation of protein kinases.
机译:非恶性细胞可以通过控制神经限制性沉默因子(REST)降解的激酶激活而转化。在这里,我们确定了一种机制,有助于基因的激活,其表达受包含REST和核仁素的重叠结合位点的响应元件控制。我们证明磷酸化和非磷酸化的核仁结合DNA;但是,只有磷酸化的核仁素才能成功地与全长REST或REST衍生的DNA结合肽REST68竞争与重叠结合位点的结合。我们显示这两个转录因子之间的相互作用调节了肿瘤和非恶性细胞中活化的蛋白激酶C激活细胞存活和免疫调节基因的激活,并伴随着细胞增殖和凋亡的改变。我们提出了一种调控这些基因的模型,这为控制由蛋白激酶激活驱动的细胞转化的分子机制带来了新的见解。

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