Elmroth Kecke, Stenerlöw Bo
Department of Oncology, Uppsala University, Sweden.
Radiat Res. 2007 Aug;168(2):175-82. doi: 10.1667/RR0652.1.
In this study the induction of double-strand breaks (DSBs) was investigated in Chinese hamster V79-379A cells irradiated with the Auger-electron emitter (125)I incorporated into DNA. The role of chromatin organization was studied by pulse-labeling synchronized cells with (125)IdU before decay accumulation in early or late S phase. Pulsed-field gel electrophoresis and fragment-size analysis were used to quantify the distribution of DNA fragments in irradiated intact cells and naked DNA as well as in DNA from asynchronously labeled cultures in a different scavenging environment. The results show that in intact cells, after accumulation of decays at -70 degrees C in the presence of 10% DMSO, almost four times more DSBs were induced in late S phase compared with early S phase and the fragment distribution was clearly non-random with an excess of fragments <0.2 Mbp. The DSB yield was 0.6 DSB/cell and decay for cells irradiated in early S phase and 2.3 DSBs/cell and decay for cells irradiated in late S phase. When similar experiments were performed on naked genomic DNA or intact cells irradiated with gamma rays, the difference in yield was not as prominent. These data imply a role of chromatin organization in the induction of DSBs by DNA-incorporated (125)I. In summary, the results presented here suggest that the yield of DSBs as well as the fragment distribution induced by (125)IdU decay may vary significantly depending on the chromatin organization during S phase and the labeling procedure used.
在本研究中,我们研究了用掺入DNA的俄歇电子发射体(125)I照射中国仓鼠V79 - 379A细胞时双链断裂(DSB)的诱导情况。通过在早期或晚期S期衰变积累前用(125)IdU脉冲标记同步化细胞,研究了染色质组织的作用。脉冲场凝胶电泳和片段大小分析用于量化照射的完整细胞、裸露DNA以及来自不同清除环境中异步标记培养物的DNA中DNA片段的分布。结果表明,在完整细胞中,在10% DMSO存在下于 - 70℃积累衰变后,晚期S期诱导的DSB几乎是早期S期的四倍,并且片段分布明显非随机,小于0.2 Mbp的片段过量。早期S期照射的细胞DSB产率为0.6 DSB/细胞和衰变,晚期S期照射的细胞为2.3 DSB/细胞和衰变。当对裸露的基因组DNA或用γ射线照射的完整细胞进行类似实验时,产率差异不那么显著。这些数据表明染色质组织在由掺入DNA的(125)I诱导DSB中起作用。总之,此处给出的结果表明,(125)IdU衰变诱导的DSB产率以及片段分布可能会根据S期的染色质组织和所使用的标记程序而有显著差异。