環境変異原研究
Online ISSN : 1880-7054
Print ISSN : 0910-0865
ISSN-L : 0910-0865
第32回大会シンポジウム2「DNA損傷と変異のメカニズム」
DNA前駆体の酸化損傷と突然変異
能美 健彦清水 雅富グルーズ ピーター
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ジャーナル フリー

2004 年 26 巻 2 号 p. 159-165

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Altered oxidative metabolism is a property of many tumor cells. Oxidation of dNTP pool as well as DNA is a source of genome instability. We report here that two Y-family DNA polymerases of the archaeon Sulfolobus solfataricus strains P1 and P2 incorporate oxidized dNTPs into nascent DNA in an erroneous manner: the polymerases exclusively incorporate 8-hydroxy-dGTP opposite template A, and incorporate 2-hydroxy-dATP opposite G and T. Extension onto the incorporated analogs is only slightly reduced. Human DNA polymerase η, a member of human Y-family DNA polymerases, incorporates the oxidized dNTPs in a similar erroneous manner. These DNA polymerases are shown to bypass a variety of DNA lesions. Thus, our results suggest the Y-family DNA polymerases promote mutagenesis through the erroneous incorporation of the oxidized dNTPs during DNA synthesis in addition to facilitating translesion DNA synthesis.
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© 2004 日本環境変異原学会
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