Shimizu Masatomi, Gruz Petr, Kamiya Hiroyuki, Kim Su-Ryang, Pisani Francesca M, Masutani Chikahide, Kanke Yusuke, Harashima Hideyoshi, Hanaoka Fumio, Nohmi Takehiko
Division of Genetics and Mutagenesis, National Institute of Health Sciences, 1-18-1 Kamiyoga, Setagaya-ku, Tokyo 158-8501, Japan.
EMBO Rep. 2003 Mar;4(3):269-73. doi: 10.1038/sj.embor.embor765.
Deranged oxidative metabolism is a property of many tumour cells. Oxidation of the deoxynucleotide triphosphate (dNTP) pool, as well as DNA, is a major cause of genome instability. Here, we report 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-OH-dGTP opposite adenine in the template, and incorporate 2-OH-dATP opposite guanine more efficiently than opposite thymine. The rate of extension of the nascent DNA chain following on from these incorporated analogues is only slightly reduced. These DNA polymerases have been shown to bypass a variety of DNA lesions. Thus, our results suggest that the Y-family DNA polymerases promote mutagenesis through the erroneous incorporation of oxidized dNTPs during DNA synthesis, in addition to facilitating translesion DNA synthesis. We also report that human DNA polymerase eta, a human Y-family DNA polymerase, incorporates the oxidized dNTPs in a similar erroneous manner.
紊乱的氧化代谢是许多肿瘤细胞的一个特性。脱氧核苷三磷酸(dNTP)池以及DNA的氧化是基因组不稳定的主要原因。在此,我们报告嗜热栖热菌菌株P1和P2的两种Y家族DNA聚合酶以错误的方式将氧化的dNTP掺入新生DNA中:这些聚合酶专门在模板中的腺嘌呤对面掺入8-羟基-dGTP,并且在鸟嘌呤对面掺入2-羟基-dATP的效率高于在胸腺嘧啶对面。在掺入这些类似物之后新生DNA链的延伸速率仅略有降低。这些DNA聚合酶已被证明能绕过多种DNA损伤。因此,我们的结果表明,Y家族DNA聚合酶除了促进跨损伤DNA合成外,还通过在DNA合成过程中错误地掺入氧化的dNTP来促进诱变。我们还报告说,人类Y家族DNA聚合酶——人类DNA聚合酶η,以类似的错误方式掺入氧化的dNTP。