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首页> 外文期刊>Oncogene >Identification of PRC1 as the p53 target gene uncovers a novel function of p53 in the regulation of cytokinesis
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Identification of PRC1 as the p53 target gene uncovers a novel function of p53 in the regulation of cytokinesis

机译:作为P53靶基因的PRC1鉴定P53在细胞因子调节中揭示P53的新功能

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摘要

Our previous studies conducted in MCF7-ptsp53 cells have demonstrated that overexpression of the wild-type (wt) p53 at permissive temperature 32°C leads to growth arrest at the G2/Mphase of the cell cycle. To identify novel p53-regulated genes that are responsible for the p53-induced G2/M arrest, we conducted cDNA microarray analyses. The array results indicated that the mRNA level of protein regulator of cytokinesis (PRC1) was significantly decreased when the p53 transactivation activity was turned on, suggesting that PRC1 transcription could be downregulated by p53. In this study, we have extensively examined the functional role of p53 in the regulation of PRC1, a cell cycle protein that plays important roles during cytokinesis. We demonstrate that increased expression of the wt p53 either by exogenous transfection or chemical induction results in reduced mRNA and protein expression of PRC1 in HCT116 p53+/+, HCT116 p53-/-, MCF-7, T47D, and HeLa cells. Importantly, we show that the decreased PRC1 expression is accompanied by the appearance of binucleated cells, indicating the process of cell division after mitosis being inhibited. By isolation and characterization of a 3kb genomic fragment containing the 5'-flanking region and part of exon 1 of PRC1 gene, we demonstrate that p53 directly suppresses PRC1 gene transcription. We further locate the p53-responsive sequence to the proximal promoter region -214 to –163, relative to the transcriptional start site. The in vivo interaction of p53 with PRC1 gene promoter is further demonstrated by chromatin immunoprecipitation assay. Taken together, these new findings suggest that p53 may have important roles in the regulation of cytokinesis through controlling the transcription of PRC1.
机译:我们以前在MCF7-PTSP53细胞中进行的先前研究表明,允许温度32℃的野生型(WT)P53的过度表达导致细胞周期的G2 / MPhase的生长停滞。为了鉴定负责P53诱导的G2 / M抑制的新型P53调节基因,我们进行了cDNA微阵列分析。阵列结果表明,当打开P53转移活性时,Cytokinesis(PRC1)的蛋白质调节剂的mRNA水平显着降低,表明P53可以下调PRC1转录。在这项研究中,我们已经广泛地检查了P53在PRC1调节中的功能作用,一种在细胞因子期间起到重要作用的细胞周期蛋白。我们证明了通过外源转染或化学诱导的WT P53的表达增加导致HCT116 P53 + / +,HCT116 P53 - / - ,MCF-7,T47D和HeLa细胞中的PRC1的mRNA和蛋白表达。重要的是,我们表明,降低的PRC1表达伴随着Binucleated细胞的出现,表明抑制有丝分裂后细胞分裂的过程。通过分离和表征含有5'侧翼区域的3kb基因组片段和PRC1基因的部分的一部分,我们证明P53直接抑制PRC1基因转录。我们进一步将p53响应序列与近端启动子区-214至-163定位于近端启动子区域-214至-163。通过染色质免疫沉淀测定进一步证明了P53与PRC1基因启动子的体内相互作用。在一起,这些新发现表明P53通过控制PRC1的转录,P53可能在细胞因子调节中具有重要作用。

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