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High-LET irradiation of a DNA-binding protein: Protein-protein and DNA-protein crosslinks

机译:DNA结合蛋白的高LET辐射:蛋白质-蛋白质和DNA-蛋白质交联

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摘要

The chromosomal protein MC1 is a monomeric protein of 93 amino acids that is able to bind any DNA but has a slight preferential affinity for some sequences and structures, like cruciform and minicircles. The protein has been irradiated with Ar-36(18+) ions of 95 MeVucleon. The LET of these particles in water is close to 270 keV/mu m. We tested the activity of the protein by measuring its ability to form complexes with DNA. We tested the integrity of the protein by measuring the molecular weight of the species formed. Compared with gamma radiation, we observed for the same dose a less efficient inactivation of the protein, a greater protection of the protein by the bound DNA, a lower induction of chain breakage, and a greater production of protein-protein and DNA-protein crosslinks. The results are discussed in terms of the quantitative and the qualitative differences between the two types of radiation: The global radical yield is slightly higher with gamma rays, whereas the density of radicals produced along the particle track is considerably higher with argon ions. (c) 2005 by Radiation Research Society.
机译:染色体蛋白MC1是一种93个氨基酸的单体蛋白,能够结合任何DNA,但对某些序列和结构(如十字形和小圆圈)具有轻微的优先亲和力。该蛋白质已被95 MeV /核仁的Ar-36(18+)离子辐照。这些颗粒在水中的LET接近270keV /μm。我们通过测量蛋白质与DNA形成复合物的能力来测试蛋白质的活性。我们通过测量所形成物种的分子量来测试蛋白质的完整性。与伽马射线辐射相比,我们观察到相同剂量的蛋白质失活效率较低,结合的DNA对蛋白质的保护更大,链断裂的诱导程度更低,并且蛋白质-蛋白质和DNA-蛋白质交联的产量更高。讨论了两种辐射在数量和质量上的差异:γ射线对整体自由基的产率略高,而氩离子对沿粒子径迹产生的自由基的密度显着较高。 (c)辐射研究学会,2005年。

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