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生物钟与DNA损伤反应之间的新联系。

Emerging links between the biological clock and the DNA damage response.

作者信息

Collis Spencer J, Boulton Simon J

机构信息

DNA Damage Response Lab, Clare Hall Laboratories, Cancer Research UK, Blanch Lane, South Mimms, EN6 3LD, UK.

出版信息

Chromosoma. 2007 Aug;116(4):331-9. doi: 10.1007/s00412-007-0108-6. Epub 2007 May 11.

Abstract

For life forms to survive, they must adapt to their environmental conditions. One such factor that impacts on both prokaryotic and eukaryotic organisms is the light-dark cycle, a consequence of planetary rotation in relation to our sun. In mammals, the daily light cycle has affected the regulation of many cellular processes such as sleep-wake and calorific intake activities, hormone secretion, blood pressure and immune system responses. Such rhythmic behaviour is the consequence of circadian rhythm/biological clock (BC) systems which are controlled in a light stimulus-dependent manner by a master clock called the suprachiasmatic nucleus (SCN) situated within the anterior hypothalamus. Peripheral clocks located in other organs such as the liver and kidneys relay signals from the SCN, which ultimately leads to tightly controlled expression of several protein families that in turn act on a broad range of cellular functions. Work in lower organisms has demonstrated a link between aging processes and BC factors, and studies in both animal models and clinical trials have postulated a role for certain BC-associated proteins in tumourigenesis and cancer progression. Recent exciting data reported within the last year or so have now established a molecular link between specific BC proteins and factors that control the mammalian cell cycle and DNA damage checkpoints. This mini review will focus on these discoveries and emphasise how such BC proteins may be involved, through their interplay with cell cycle/DNA damage response pathways, in the development of human disease such as cancer.

摘要

为了生存,生命形式必须适应其环境条件。影响原核生物和真核生物的一个因素是明暗周期,这是地球相对于太阳自转的结果。在哺乳动物中,日常光照周期影响了许多细胞过程的调节,如睡眠-觉醒和热量摄入活动、激素分泌、血压和免疫系统反应。这种节律性行为是昼夜节律/生物钟(BC)系统的结果,该系统以前下丘脑内的视交叉上核(SCN)为主时钟,以光刺激依赖的方式进行控制。位于肝脏和肾脏等其他器官的外周时钟传递来自SCN的信号,最终导致几个蛋白质家族的严格控制表达,这些蛋白质家族进而作用于广泛的细胞功能。对低等生物的研究表明衰老过程与BC因子之间存在联系,动物模型和临床试验的研究推测某些与BC相关的蛋白质在肿瘤发生和癌症进展中起作用。在过去一年左右报道的最新令人兴奋的数据现已建立了特定BC蛋白质与控制哺乳动物细胞周期和DNA损伤检查点的因子之间的分子联系。本综述将聚焦于这些发现,并强调此类BC蛋白质如何通过与细胞周期/DNA损伤反应途径的相互作用,参与人类疾病如癌症的发展。

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