Radiation-induced potentially lethal damage: DNA lesions susceptible to fixation.

G Iliakis
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引用次数: 144

Abstract

The various postirradiation incubation conditions reported to uncover potentially lethal damage (PLD) induced by ionizing radiation are outlined and critically discussed. The process of damage fixation is the most characteristic determinant in distinguishing between PLD and other forms of damage (lethal or non-lethal). The results compiled indicate the induction of two forms of PLD (termed alpha- and beta-PLD). Evidence is presented that repair and fixation of alpha-PLD may underlie the variation in radiosensitivity observed through the cycle. Beta-PLD appears to be sensitive only to postirradiation treatment in anisotonic sale solutions. Results obtained at the DNA and chromosome level, under conditions allowing repair or causing fixation of PLD, are reviewed and combined together to devise a qualitative model that outlines a possible sequence of events from damage fixation at the DNA level, to damage fixation at the chromosome level and, ultimately, to cell death. It is suggested that damage uncovered at the cellular level as potentially lethal, comprises DNA dsb (single, pairs or groups) and that fixation is mediated by forces transmitted to the double helix through alteration (local or general) in chromatin conformation. Changes in chromatin conformation are caused either as a result of the cell's progression through the cycle or in response to a postirradiation treatment. The fixation process leads to the induction of chromosome aberrations. The validity of the concept of PLD in in vivo systems is shown, and the possible importance of PLD repair in radiation therapy is reviewed. The concept of PLD is compared to the concept of sublethal damage, and the possibility that similar molecular lesions underlie both types of damage is discussed.

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辐射引起的潜在致命损伤:DNA损伤容易固定。
各种辐射后的孵化条件报道揭示潜在的致命损伤(PLD)诱导电离辐射概述和批判性讨论。损伤固定过程是区分PLD和其他形式损伤(致命或非致命)的最典型决定因素。编译的结果表明诱导两种形式的PLD(称为α -PLD和β -PLD)。有证据表明,修复和固定α - pld可能是通过周期观察到的放射敏感性变化的基础。β - pld似乎只对各向异性溶液中的放射后处理敏感。在允许修复或引起PLD固定的条件下,在DNA和染色体水平上获得的结果被回顾并结合在一起,以设计一个定性模型,该模型概述了从DNA水平的损伤固定到染色体水平的损伤固定,最终到细胞死亡的可能事件序列。这表明,在细胞水平上发现的损伤可能是致命的,包括DNA dsb(单个、对或组),并且固定是通过染色质构象的改变(局部或普遍)传递给双螺旋的力介导的。染色质构象的改变是由于细胞在周期中的进展或对放射后治疗的反应而引起的。固定过程导致染色体畸变的诱导。在体内系统中显示了PLD概念的有效性,并对PLD修复在放射治疗中的可能重要性进行了综述。将PLD的概念与亚致死损伤的概念进行了比较,并讨论了两种损伤类型的相似分子病变的可能性。
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