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首页> 外文期刊>DNA repair >Targeted deletion of the genes encoding NTH1 and NEIL1 DNA N-glycosylases reveals the existence of novel carcinogenic oxidative damage to DNA.
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Targeted deletion of the genes encoding NTH1 and NEIL1 DNA N-glycosylases reveals the existence of novel carcinogenic oxidative damage to DNA.

机译:有针对性地删除编码NTH1和NEIL1 DNA N-糖基化酶的基因,揭示了对DNA的新型致癌性氧化损伤的存在。

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摘要

We have generated a strain of mice lacking two DNA N-glycosylases of base excision repair (BER), NTH1 and NEIL1, homologs of bacterial Nth (endonuclease three) and Nei (endonuclease eight). Although these enzymes remove several oxidized bases from DNA, they do not remove the well-known carcinogenic oxidation product of guanine: 7,8-dihydro-8-oxoguanine (8-OH-Gua), which is removed by another DNA N-glycosylase, OGG1. The Nth1-/-Neil1-/- mice developed pulmonary and hepatocellular tumors in much higher incidence than either of the single knockouts, Nth1-/- and Neil1-/-. The pulmonary tumors contained, exclusively, activating GGT-->GAT transitions in codon 12 of K-ras of their DNA. Such transitions contrast sharply with the activating GGT-->GTT transversions in codon 12 of K-ras of the pathologically similar pulmonary tumors, which arose in mice lacking OGG1 and a second DNA N-glycosylase, MUTY. To characterize the biochemical phenotype of the knockout mice, the content of oxidative DNA base damage was analyzed from three tissues isolated from control, single and double knockout mice. The content of 8-OH-Gua was indistinguishable among all genotypes. In contrast, the content of 4,6-diamino-5-formamidopyrimidine (FapyAde) and 2,6-diamino-4-hydroxy-5-formamidopyrimidine (FapyGua) derived from adenine and guanine, respectively, were increased in some but not all tissues of Neil1-/- and Neil1-/-Nth1-/- mice. The high incidence of tumors in our Nth1-/-Neil1-/- mice together with the nature of the activating mutation in the K-ras gene of their pulmonary tumors, reveal for the first time, the existence of mutagenic and carcinogenic oxidative damage to DNA which is not 8-OH-Gua.
机译:我们已经生成了一种小鼠,该小鼠缺乏两个碱基切除修复(BER),NTH1和NEIL1的DNA N-糖基化酶,细菌Nth(核酸内切酶3)和Nei(核酸内切酶8)的同源物。尽管这些酶从DNA上除去了一些氧化的碱基,但它们并没有除去鸟嘌呤的致癌的氧化产物:7,8-二氢-8-氧鸟嘌呤(8-OH-Gua),被另一种DNA N-糖基化酶除去了,OGG1。 Nth1-/-Neil1-/-小鼠发生肺和肝细胞肿瘤的发生率远高于单个基因敲除的Nth1-/-和Neil1-/-。肺部肿瘤仅在其DNA的K-ras密码子12中包含激活的GGT-> GAT转变。这种转变与病理相似的肺部肿瘤的K-ras密码子12中激活的GGT-> GTT转化形成鲜明对比,这种转化在缺乏OGG1和第二种DNA N-糖基化酶MUTY的小鼠中出现。为了表征敲除小鼠的生化表型,从分离自对照,单和双敲除小鼠的三个组织中分析了氧化DNA碱基损伤的含量。在所有基因型中,8-OH-Gua的含量是无法区分的。相反,某些但不是全部,分别衍生自腺嘌呤和鸟嘌呤的4,6-二氨基-5-甲酰胺基嘧啶(FapyAde)和2,6-二氨基-4-羟基-5-甲酰胺基嘧啶(FapyGua)的含量增加了。 Neil1-/-和Neil1-/-Nth1-/-小鼠的组织。我们的Nth1-/-Neil1-/-小鼠中肿瘤的高发率以及其肺部肿瘤K-ras基因激活突变的性质,首次揭示了致癌性和致癌性氧化损伤的存在。不是8-OH-Gua的DNA。

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