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Molecular Analysis of Carbon Ion-Induced Mutations in DNA Repair-Deficient Strains of Saccharomyces cerevisiae

机译:DNA修复缺陷型酿酒酵母菌菌株中碳离子诱导突变的分子分析

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Mutations caused by ion beams have been well-studied in plants, including ornamental flowers, rice, and algae. It has been shown that ion beams have several significantly interesting features, such as a high biological effect and unique mutation spectrum, which is in contrast to low linear energy transfer (LET) radiation such as gamma rays. In this study, the effects of double strand breaks and 8-oxo-2-deoxyguanosine (8-oxodG) caused by ion-beam irradiation were examined. We irradiated repair-gene-inactive strains rad52, ogg1, and msh2 using carbon ion beams, analyzed the lethality and mutagenicity, and characterized the mutations. High-LET carbon ion-beam radiation was found to cause oxidative base damage, such as 8-oxodG, which can lead to mutations. The present observations suggested that nucleotide incorporation of oxidative damage gave only a limited effect on cell viability and genome fidelity. The ion-beam mutations occurred predominantly in 5-ACA-3 sequences, and we detected a hotspot at around +79 to +98 in URA3 in wild-type and mutant lines, suggesting the presence of a mutation-susceptible region.
机译:由离子束引起的突变在植物中进行了很好地研究,包括观赏花卉,大米和藻类。已经表明,离子束具有若干显着有趣的特征,例如高生物效应和独特的突变谱,与低线性能量转移(使)诸如伽马射线的辐射形成对比。在该研究中,检查了由离子束辐射引起的双链断裂和8-氧代-2-脱氧核苷酸(8-氧代)的影响。我们使用碳离子束照射修复 - 基因 - 无活性菌株Rad52,OGG1和MSH2,分析致死性和致突变性,并表征突变。发现高含碳离子束辐射导致氧化碱损伤,例如8-氧代损伤,其可导致突变。本发明观察结果表明,氧化损伤的核苷酸掺入对细胞活力和基因组保真度仅产生有限的影响。离子束突变主要发生在5-ACA-3序列中,并且在野生型和突变线中,我们在URA3中检测到+79至+98的热点,表明存在突变易感区域。

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