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Cancer clocks in tumourigenesis: the p53 pathway and beyond

机译:肿瘤内癌症时钟:P53途径及超越

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Circadian rhythms regulate a vast array of physiological and cellular processes, as well as the hormonal milieu, to keep our cells synchronised to the light–darkness cycle. Epidemiologic studies have implicated circadian disruption in the development of breast and other cancers, and numerous clock genes are dysregulated in human tumours. Here we review the evidence that circadian rhythms, when altered at the molecular level, influence cancer growth. We also note some common pitfalls in circadian-cancer research and how they might be avoided to maximise comparable results and minimise misleading data. Studies of circadian gene mutant mice, and human cancer models in vitro and in vivo , demonstrate that clock genes can impact tumourigenesis. Clock genes influence important cancer-related pathways, ranging from p53-mediated apoptosis to cell cycle progression. Confusingly, clock dysfunction can be both pro- or anti-tumourigenic in a model and cell type-specific manner. Due to this duality, there is no canonical mechanism for clock interaction with tumourigenic pathways. To understand the role of the circadian clock in patients’ tumours requires analysis of the molecular clock status compared to healthy tissue. Novel mathematical approaches are under development, but this remains largely aspirational, and is hampered by a lack of temporal information in publicly available datasets. Current evidence broadly supports the notion that the circadian clock is important for cancer biology. More work is necessary to develop an overarching model of this connection. Future studies would do well to analyse the clock network in addition to alterations in single clock genes.
机译:昼夜节律规范了大量的生理和细胞过程,以及荷尔蒙内的环境,以防止我们的细胞与光暗循环同步。流行病学研究在乳腺癌和其他癌症的发育中暗示了昼夜振荡,并且在人肿瘤中失调了许多时钟基因。在这里,我们审查了昼夜节律,在分子水平改变时,影响癌症生长的证据。我们还注意到昼夜癌症研究中的一些常见缺陷以及如何避免它们最大化可比结果并最大限度地减少误导性数据。在体外和体内昼夜基因突变小鼠和人类癌模型的研究证明时钟基因会影响肿瘤内酯。时钟基因会影响重要的癌症相关的途径,从P53介导的凋亡范围到细胞周期进展。令人困惑地,在模型和细胞类型特异性的方式中,时钟功能障碍可以是促进或抗肿瘤的。由于这种二元性,与肿瘤途径的时钟相互作用没有规范机制。为了了解昼夜时钟在患者的肿瘤中的作用需要分析与健康组织相比的分子时钟状态。新的数学方法正在开发中,但这仍然很大程度上是有抱负的,并且由于在公开的数据集中缺乏时间信息而受到阻碍。目前的证据广泛支持昼夜节奏对癌症生物学很重要的概念。更多的工作是开发这种联系的总体模型。除了单一时钟基因中的改变之外,未来的研究还可以很好地分析时钟网络。

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