The essentiality landscape of cell cycle related genes in human pluripotent and cancer cells.

IF 2.8 4区 生物学 Q3 CELL BIOLOGY Cell Division Pub Date : 2019-12-23 eCollection Date: 2019-01-01 DOI:10.1186/s13008-019-0058-4
Ruth Viner-Breuer, Atilgan Yilmaz, Nissim Benvenisty, Michal Goldberg
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引用次数: 13

Abstract

Background: Cell cycle regulation is a complex system consisting of growth-promoting and growth-restricting mechanisms, whose coordinated activity is vital for proper division and propagation. Alterations in this regulation may lead to uncontrolled proliferation and genomic instability, triggering carcinogenesis. Here, we conducted a comprehensive bioinformatic analysis of cell cycle-related genes using data from CRISPR/Cas9 loss-of-function screens performed in four cancer cell lines and in human embryonic stem cells (hESCs).

Results: Cell cycle genes, and in particular S phase and checkpoint genes, are highly essential for the growth of cancer and pluripotent cells. However, checkpoint genes are also found to underlie the differences between the cell cycle features of these cell types. Interestingly, while growth-promoting cell cycle genes overlap considerably between cancer and stem cells, growth-restricting cell cycle genes are completely distinct. Moreover, growth-restricting genes are consistently less frequent in cancer cells than in hESCs. Here we show that most of these genes are regulated by the tumor suppressor gene TP53, which is mutated in most cancer cells. Therefore, the growth-restriction system in cancer cells lacks important factors and does not function properly. Intriguingly, M phase genes are specifically essential for the growth of hESCs and are highly abundant among hESC-enriched genes.

Conclusions: Our results highlight the differences in cell cycle regulation between cell types and emphasize the importance of conducting cell cycle studies in cells with intact genomes, in order to obtain an authentic representation of the genetic features of the cell cycle.

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人类多能细胞和癌细胞中细胞周期相关基因的本质景观。
背景:细胞周期调控是一个由促生长机制和促生长机制组成的复杂系统,它们的协调活动对细胞的正常分裂和繁殖至关重要。这种调控的改变可能导致不受控制的增殖和基因组不稳定,从而引发癌变。在这里,我们利用在四种癌细胞系和人类胚胎干细胞(hESCs)中进行的CRISPR/Cas9功能缺失筛选的数据,对细胞周期相关基因进行了全面的生物信息学分析。结果:细胞周期基因,特别是S期和检查点基因,对肿瘤和多能细胞的生长至关重要。然而,检查点基因也被发现是这些细胞类型的细胞周期特征差异的基础。有趣的是,虽然促进生长的细胞周期基因在癌症细胞和干细胞之间有很大的重叠,但限制生长的细胞周期基因是完全不同的。此外,生长限制基因在癌细胞中的频率始终低于hESCs。在这里,我们发现这些基因中的大多数是由肿瘤抑制基因TP53调控的,而TP53在大多数癌细胞中发生突变。因此,癌细胞的生长限制系统缺乏重要因子,不能正常发挥作用。有趣的是,M期基因对于hesc的生长是特别重要的,并且在hesc富集基因中非常丰富。结论:我们的研究结果突出了细胞类型之间细胞周期调控的差异,并强调了在完整基因组的细胞中进行细胞周期研究的重要性,以获得细胞周期遗传特征的真实代表。
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来源期刊
Cell Division
Cell Division CELL BIOLOGY-
CiteScore
3.70
自引率
0.00%
发文量
5
审稿时长
>12 weeks
期刊介绍: Cell Division is an open access, peer-reviewed journal that encompasses all the molecular aspects of cell cycle control and cancer, cell growth, proliferation, survival, differentiation, signalling, gene transcription, protein synthesis, genome integrity, chromosome stability, centrosome duplication, DNA damage and DNA repair. Cell Division provides an online forum for the cell-cycle community that aims to publish articles on all exciting aspects of cell-cycle research and to bridge the gap between models of cell cycle regulation, development, and cancer biology. This forum is driven by specialized and timely research articles, reviews and commentaries focused on this fast moving field, providing an invaluable tool for cell-cycle biologists. Cell Division publishes articles in areas which includes, but not limited to: DNA replication, cell fate decisions, cell cycle & development Cell proliferation, mitosis, spindle assembly checkpoint, ubiquitin mediated degradation DNA damage & repair Apoptosis & cell death
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