首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Sequential Inductions of the ZEB1 Transcription Factor Caused by Mutation of Rb and Then Ras Proteins Are Required for Tumor Initiation and Progression
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Sequential Inductions of the ZEB1 Transcription Factor Caused by Mutation of Rb and Then Ras Proteins Are Required for Tumor Initiation and Progression

机译:Rb突变然后Ras蛋白突变引起的ZEB1转录因子的顺​​序诱导对于肿瘤的发生和发展是必需的

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摘要

Rb1 restricts cell cycle progression, and it imposes cell contact inhibition to suppress tumor outgrowth. It also triggers oncogene-induced senescence to block Ras mutation. Loss of the Rb1 pathway, which is a hallmark of cancer cells, then provides a permissive environment for Ras mutation, and Ras is sufficient for invasive tumor formation in Rb1 family mutant mouse embryo fibroblasts (MEFs). These results demonstrate that sequential mutation of the Rb1 and Ras pathways comprises a tumor initiation axis. Both Rb1 and Ras regulate expression of the transcription factor ZEB1, thereby linking tumor initiation to the subsequent invasion and metastasis, which is induced by ZEB1. ZEB1 acts in a negative feedback loop to block expression of miR-200, which is thought to facilitate tumor invasion and metastasis. However, ZEB1 also represses cyclin-dependent kinase (cdk) inhibitors to control the cell cycle; its mutation in MEFs leads to induction of these inhibitors and premature senescence. Here, we provide evidence for two sequential inductions of ZEB1 during Ras transformation of MEFs. Rb1 constitutively represses cdk inhibitors, and induction of ZEB1 when the Rb1 pathway is lost is required to maintain this repression, allowing for the classic immortalization and loss of cell contact inhibition seen when the Rb1 pathway is lost. In vivo, we show that this induction of ZEB1 is required for Ras-initiated tumor formation. ZEB1 is then further induced by Ras, beyond the level seen with Rb1 mutation, and this Ras superinduction is required to reach a threshold of ZEB1 sufficient for repression of miR-200 and tumor invasion.
机译:Rb1限制细胞周期进程,并施加细胞接触抑制作用以抑制肿瘤的生长。它还会触发癌基因诱导的衰老来阻止Ras突变。 Rb1途径的丧失是癌细胞的标志,然后为Ras突变提供了宽松的环境,并且Ras足以在Rb1家族突变小鼠胚胎成纤维细胞(MEF)中形成侵袭性肿瘤。这些结果证明Rb1和Ras途径的顺序突变包括肿瘤起始轴。 Rb1和Ras都调节转录因子ZEB1的表达,从而将肿瘤的发生与随后由ZEB1诱导的侵袭和转移联系起来。 ZEB1在负反馈回路中起作用,以阻止miR-200的表达,这被认为可促进肿瘤的侵袭和转移。但是,ZEB1还抑制细胞周期蛋白依赖性激酶(cdk)抑制剂来控制细胞周期。其在MEF中的突变导致这些抑制剂的诱导和过早衰老。在这里,我们为MEF的Ras转化过程中ZEB1的两个顺序诱导提供证据。 Rb1组成性地抑制cdk抑制剂,并且需要Rb1途径缺失时诱导ZEB1才能维持这种抑制,从而使经典的永生化和Rb1途径丧失时所见的细胞接触抑制丧失。在体内,我们显示ZEB1的这种诱导是Ras引发的肿瘤形成所必需的。然后,Ras进一步诱导ZEB1,超过Rb1突变所见的水平,并且需要这种Ras超诱导才能达到足以抑制miR-200和肿瘤侵袭的ZEB1阈值。

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