Insight into sites

John R.K. Savage
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引用次数: 65

Abstract

Spatial factors conditioning the formation of radiation-induced chromosome exchange aberrations are reviewed, and concepts such as ‘rejoining distance’ and ‘site’ are re-examined in the light of the unexpectedly high frequencies of multi-break (‘Complex’) exchanges being revealed by FISH painting. Given the anticipated densities of dsb within a nucleus, and assuming random 3-D break distribution, nearest-neighbour analysis indicates that the most likely break interaction distance is a well defined shell, several hundred nm from each break. The sharpness with which this shell is defined increases with break density, and therefore with dose. It is argued that random movement and chance meeting over such distances will not account for the Complex frequencies observed, and that other factors, or modes of formation, must be invoked.

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本文回顾了影响辐射诱导的染色体交换畸变形成的空间因素,并根据FISH绘画所揭示的高频率的多重断裂(“复杂”)交换,重新审视了“重新连接距离”和“场地”等概念。考虑到dsb在原子核内的预期密度,并假设随机的三维断裂分布,最近邻分析表明,最可能的断裂相互作用距离是一个定义良好的壳层,距离每个断裂数百纳米。定义此壳的锐度随断裂密度而增加,因此随剂量而增加。有人认为,在这种距离上的随机运动和偶然相遇不能解释观察到的复频率,必须援引其他因素或形成模式。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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