2020
DOI: 10.1097/hp.0000000000001251
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Ionizing Radiation Alters the Transition/Transversion Ratio in the Exome of Human Gingiva Fibroblasts

Abstract: Little is known about the mutational impact of ionizing radiation (IR) exposure on a genome-wide level in mammalian tissues. Recent advancements in sequencing technology have provided powerful tools to perform exome-wide analyses of genetic variation. This also opened up new avenues for studying and characterizing global genomic IR-induced effects. However, genotypes generated by next generation sequencing (NGS) studies can contain errors, which may significantly impact the power to detect signals in common an… Show more

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“…This is in line with different studies in plants and mammals [ 32 , 33 ], who report a conspicuously high proportion of transversions after irradiation. Moreover, it is consistent with our observations in exome data from HGF cells that received an identical treatment as the cells used in this study [ 34 ]. A high frequency of transversions are considered a feature of oxidative DNA damage [ 35 ] and could here indicate the indirect effect of radiation through hydroxyl radicals by radiolysis of water [ 6 ].…”
Section: Discussionsupporting
confidence: 92%
“…This is in line with different studies in plants and mammals [ 32 , 33 ], who report a conspicuously high proportion of transversions after irradiation. Moreover, it is consistent with our observations in exome data from HGF cells that received an identical treatment as the cells used in this study [ 34 ]. A high frequency of transversions are considered a feature of oxidative DNA damage [ 35 ] and could here indicate the indirect effect of radiation through hydroxyl radicals by radiolysis of water [ 6 ].…”
Section: Discussionsupporting
confidence: 92%