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DNA double-strand breaks induced by decay of (123)I-labeled Hoechst 33342: role of DNA topology.

机译:由(123)I标记的Hoechst 33342的衰变诱导的DNA双链断裂:DNA拓扑结构的作用。

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摘要

PURPOSE: To determine double-strand-break (DSB) yields produced by decay of minor-groove-bound (123)I-labeled Hoechst 33342 ((123)IEH) in supercoiled (SC) and linear (L) forms of pUC19 DNA, to compare strand-break efficiency of (123)IEH with that of (125)IEH, and to examine the role of DNA topology in DSB induction by these Auger electron emitters. MATERIALS AND METHODS: Tritium-labeled SC and L pUC19 DNA were incubated with (123)IEH (0-10.9 MBq) at 4 degrees C. After (123)I had completely decayed (10 days), samples were analyzed on agarose gel, and single-strand-break (SSB) and DSB yields were measured. RESULTS: Each (123)I decay in SC DNA produces a DSB yield of 0.18 +/- 0.01. On the basis of DSB yields for (125)IEH (0.52 +/- 0.02 for SC and 1.62 +/- 0.07 for L, reported previously) and dosimetric expectations, a DSB yield of approximately 0.5 (3 x 0.18) per (123)I decay is expected for L DNA. However, no DSB are observed for the L form, even after approximately 2 x 10(11) decays of (123)I per microgDNA, whereas a similar number of (125)I decays produces DSB in approximately 40% of L DNA. CONCLUSION: (123)IEH-induced DSB yield for SC but not L DNA is consistent with the dosimetric expectations for Auger electron emitters. These studies highlight the role of DNA topology in DSB production by Auger emitters and underscore the failure of current theoretical dosimetric methods per se to predict the magnitude of DSB.
机译:目的:确定由小沟结合的(123)I标记的Hoechst 33342((123)IEH)在超螺旋(SC)和线性(L)形式的pUC19 DNA中的降解产生的双链断裂(DSB)产量,比较(123)IEH和(125)IEH的链断裂效率,并研究DNA拓扑结构在这些俄歇电子发射体诱导DSB诱导中的作用。材料与方法:将t标记的SC和L pUC19 DNA与(123)IEH(0-10.9 MBq)在4摄氏度下孵育。(123)I完全降解(10天)后,在琼脂糖凝胶上分析样品,测量单链断裂(SSB)和DSB的产量。结果:SC DNA中的每个(123)I衰变产生的DSB产量为0.18 +/- 0.01。根据(125)IEH的DSB产量(SC的0.52 +/- 0.02和L的1.62 +/- 0.07,先前报道)和剂量学预期,DSB的产量约为每(123)0.5(3 x 0.18)我期望L DNA会衰变。但是,即使在每个microgDNA中约有2 x 10(11)个(123)I衰变之后,也没有观察到L形式的DSB,而类似数量的(125)I衰变则在约40%的L DNA中产生了DSB。结论:(123)IEH诱导的SC而不是L DNA的DSB产量与俄歇电子发射体的剂量学期望相符。这些研究突出了俄歇发射极在DNA拓扑结构在DSB生产中的作用,并强调了目前的理论剂量法本身无法预测DSB的大小。

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