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DNA Degradation in Escherichia coli 15 T-L- Induced by Fast Proton Bombardment

机译:快速质子轰击在大肠杆菌15 T-L中引起的DNA降解

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摘要

DNA degradation and its temperature dependence as a function of linear energy transfer were studied in Excherichia coli using fast proton irradiation as the initiating agent. The data indicate that radiation-induced DNA degradation can proceed by two processes. The first, or fast component, begins immediately after irradiation with 60Co γ-rays or with fast protons at doses less than 1010 protons/cm2. The rate is high and involves a maximum of about 50% degradation. It is elicited more efficiently by protons of high linear energy transfer. The second, or slow component, results from higher doses of fast proton bombardment. There is a delay between irradiation and the initiation of this slower component, but 100% of the DNA complement is degraded. The data indicate that both processes are enzyme-mediated, the first probably by normal DNA-related activity and the second by DNAase activity.
机译:使用快速质子辐照作为引发剂,在Excherichia coli中研究了DNA降解及其温度依赖性与线性能量转移的关系。数据表明辐射诱导的DNA降解可以通过两个过程进行。第一个或快速成分是在用 60 Coγ射线或剂量小于10 10 质子/ cm 2 的快速质子辐照后立即开始的。 sup>。该速率很高,并且最多包含约50%的降解。高线性能量转移的质子可以更有效地激发它。第二个或较慢的分量是由较高剂量的快速质子轰击引起的。在辐照和这种较慢成分的起始之间存在延迟,但是100%的DNA补体被降解。数据表明这两个过程都是酶介导的,第一个过程可能是正常的DNA相关活性,第二个过程是DNAase活性。

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