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Deregulation of the circadian clock constitutes a significant factor in tumorigenesis: a clockwork cancer. Part I: clocks and clocking machinery

机译:昼夜节律时钟的放松是肿瘤发生的重要因素:发条癌症。第一部分:钟表机械

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Many physiological processes occur in a rhythmic fashion, consistent with a 24-h cycle. The central timing of the dayight rhythm is set by a master clock, located in the suprachiasmatic nucleus (a tiny region in the hypothalamus), but peripheral clocks exist in different tissues, adjustable by cues other than light (temperature, food, hormone stimulation, etc.), functioning autonomously to the master clock. Presence of unrepaired DNA damage may adjust the circadian clock so that the phase in which checking for damage and DNA repair normally occurs is advanced or extended. The expression of many of the genes coding for proteins functioning in DNA damage-associated response pathways and DNA repair is directly or indirectly regulated by the core clock proteins. Setting up the normal rhythm of the circadian cycle also involves oscillating changes in the chromatin structure, allowing differential activation of various chromatin domains within the 24-h cycle.
机译:与24小时周期一致,许多生理过程以有节奏的方式发生。昼夜节律的中心时间是由位于眼上视神经核(下丘脑中的一个微小区域)的主时钟设定的,但是外围时钟存在于不同的组织中,可以通过光线(温度,食物,激素等)以外的其他信号进行调节刺激等),根据主时钟自主运行。未修复的DNA损伤的存在可能会调节生物钟,从而提前或延长检查损伤和DNA修复的正常阶段。编码在DNA损伤相关反应途径和DNA修复中起作用的蛋白质的许多基因的表达直接或间接受核心时钟蛋白质调控。设定昼夜节律周期的正常节奏还涉及染色质结构的振荡,从而允许24小时周期内各种染色质结构域的差异激活。

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