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Adaptive response: stimulated DNA repair or decreased damage fixation?

机译:适应性反应:刺激DNA修复或减少损伤修复?

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摘要

The aim was to review the present state of knowledge on the adaptive response and attempt to redefine the acknowledged model in the framework of the transcription-based model of damage fixation of Radford (2002). Data are reviewed that suggest that the priming stimulus is the source of signalling that eventually leads to expression of the adaptive response. For a certain time, the 'primed' cell can then respond to the challenge dose by an increased recovery, as compared with the control one. An essential part of the adaptive response is generation or receipt and transmission of a signal that is the direct cause of initiation of a cellular response that diminishes the effects of DNA damage. The often accepted view that DNA repair is stimulated in the 'primed' and challenged cell is not supported by all the available data. Taking into account the abrogation of radio-adaptation by poly(ADP-ribosylation) inhibitors applied simultaneously with the challenge dose and the fact that adaptation is revealed as adecrease in chromosomal aberration frequency, one can apply to the adaptive response the same arguments as those that support the fixation model of Radford. Adaptive response (at least in part) is due to diminished fixation of double-strand breaks in the transcription factories by the mechanism proposed by Radford.
机译:目的是回顾关于适应性反应的知识的现状,并尝试在基于转录的Radford损伤固定模型(2002)的框架内重新定义公认的模型。审查的数据表明,启动刺激是信号转导的来源,最终导致适应性反应的表达。在一定时间内,与对照细胞相比,“初免”细胞可以通过增加的恢复来应对攻击剂量。适应性反应的重要部分是信号的产生或接收和传输,这是引发细胞反应的直接原因,而细胞反应减少了DNA损伤的影响。并非所有现有数据都支持人们普遍接受的观点,即在“初免”和攻击细胞中会刺激DNA修复。考虑到与挑战剂量同时应用的聚(ADP-核糖基化)抑制剂可消除放射适应,并且由于适应性显示为染色体畸变频率的降低,因此可以对适应性反应应用与支持Radford的固定模型。适应性响应(至少部分)是由于Radford提出的机制减少了转录工厂中双链断裂的固定。

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