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单个癌细胞中过度的 E2F 转录会阻止 DNA 损伤后的短暂细胞周期退出。

Excessive E2F Transcription in Single Cancer Cells Precludes Transient Cell-Cycle Exit after DNA Damage.

机构信息

Department of Biomolecular Health Sciences, Faculty of Veterinary Medicine, Utrecht University, Utrecht, the Netherlands.

Department of Biomolecular Health Sciences, Faculty of Veterinary Medicine, Utrecht University, Utrecht, the Netherlands; Department of Clinical Sciences, Faculty of Veterinary Medicine, Utrecht University, Utrecht, the Netherlands.

出版信息

Cell Rep. 2020 Dec 1;33(9):108449. doi: 10.1016/j.celrep.2020.108449.

Abstract

E2F transcription factors control the expression of cell-cycle genes. Cancers often demonstrate enhanced E2F target gene expression, which can be explained by increased percentages of replicating cells. However, we demonstrate in human cancer biopsy specimens that individual neoplastic cells display abnormally high levels of E2F-dependent transcription. To mimic this situation, we delete the atypical E2F repressors (E2F7/8) or overexpress the E2F3 activator in untransformed cells. Cells with elevated E2F activity during S/G2 phase fail to exit the cell cycle after DNA damage and undergo mitosis. In contrast, wild-type cells complete S phase and then exit the cell cycle by activating the APC/C via repression of the E2F target Emi1. Many arrested wild-type cells eventually inactivate APC/C to execute a second round of DNA replication and mitosis, thereby becoming tetraploid. Cells with elevated E2F transcription fail to exit the cell cycle after DNA damage, which potentially causes genomic instability, promotes malignant progression, and reduces drug sensitivity.

摘要

E2F 转录因子控制细胞周期基因的表达。癌症通常表现出增强的 E2F 靶基因表达,这可以通过增加复制细胞的百分比来解释。然而,我们在人类癌症活检标本中证明,个别肿瘤细胞显示出异常高水平的 E2F 依赖性转录。为了模拟这种情况,我们在未转化的细胞中删除非典型 E2F 抑制剂(E2F7/8)或过表达 E2F3 激活剂。在 S/G2 期具有升高的 E2F 活性的细胞在 DNA 损伤后无法退出细胞周期并进行有丝分裂。相比之下,野生型细胞通过抑制 E2F 靶标 Emi1 来激活 APC/C 来完成 S 期,然后退出细胞周期。许多被阻断的野生型细胞最终会失活 APC/C 以执行第二轮 DNA 复制和有丝分裂,从而成为四倍体。在 DNA 损伤后,E2F 转录升高的细胞无法退出细胞周期,这可能导致基因组不稳定,促进恶性进展并降低药物敏感性。

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