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碱基切除修复缺陷对序列选择性N3-腺嘌呤甲基化剂Me-lex诱导的致死性和致突变性的影响。

Influences of base excision repair defects on the lethality and mutagenicity induced by Me-lex, a sequence-selective N3-adenine methylating agent.

作者信息

Monti Paola, Campomenosi Paola, Ciribilli Yari, Iannone Raffaella, Inga Alberto, Shah Dharini, Scott Gina, Burns Philip A, Menichini Paola, Abbondandolo Angelo, Gold Barry, Fronza Gilberto

机构信息

Mutagenesis Laboratory, National Cancer Research Institute (IST), L.go R. Benzi, 10, 16132-Genova, Italy.

出版信息

J Biol Chem. 2002 Aug 9;277(32):28663-8. doi: 10.1074/jbc.M203384200. Epub 2002 May 31.

Abstract

Due to its minor groove selectivity, Me-lex preferentially generates N3-methyladenine (3-MeA) adducts in double-stranded DNA. We undertook a genetic approach in yeast to establish the influence of base excision repair (BER) defects on the processing of Me-lex lesions on plasmid DNA that harbors the p53 cDNA as target. We constructed a panel of isogenic strains containing a reporter gene to test p53 function and the following gene deletions: deltamag1, deltaapn1apn2, and deltaapn1apn2mag1. When compared with the wild-type strain, a decrease in survival was observed in deltamag1, deltaapn1apn2, and deltaapn1apn2mag1. The Me-lex-induced mutation frequency increased in the following order: wild type < deltamag1< deltaapn1apn2 = deltaapn1apn2mag1. A total of 77 mutants (23 in wild type, 31 in deltamag1, and 23 in deltaapn1apn2) were sequenced. Eighty-one independent mutations (24 in wild type, 34 in deltamag1, and 23 in deltaapn1apn2) were detected. The majority of base pair substitutions were AT-targeted in all strains (14/23, 61% in wild type; 20/34, 59%, in deltamag1; and 14/23, 61%, in deltaapn1apn2). The Mag1 deletion was associated with a significant decrease of GC > AT transitions when compared with both the wild-type and the AP endonuclease mutants. This is the first time that the impact of Mag1 and/or AP endonuclease defects on the mutational spectra caused by 3-MeA has been determined. The results suggest that 3-MeA is critical for Me-lex cytotoxicity and that its mutagenicity is slightly elevated in the absence of Mag1 glycosylase activity but significantly higher in the absence of AP endonuclease activity.

摘要

由于其对小沟的选择性,Me-lex优先在双链DNA中产生N3-甲基腺嘌呤(3-MeA)加合物。我们在酵母中采用遗传学方法,以确定碱基切除修复(BER)缺陷对以p53 cDNA为靶点的质粒DNA上Me-lex损伤处理的影响。我们构建了一组同基因菌株,这些菌株含有一个报告基因以测试p53功能以及以下基因缺失:deltamag1、deltaapn1apn2和deltaapn1apn2mag1。与野生型菌株相比,在deltamag1、deltaapn1apn2和deltaapn1apn2mag1中观察到存活率下降。Me-lex诱导的突变频率按以下顺序增加:野生型 < deltamag1 < deltaapn1apn2 = deltaapn1apn2mag1。共对77个突变体(野生型23个、deltamag1 31个、deltaapn1apn2 23个)进行了测序。检测到81个独立突变(野生型24个、deltamag1 34个、deltaapn1apn2 23个)。在所有菌株中,大多数碱基对替换都以AT为靶点(野生型中14/23,61%;deltamag1中20/34,59%;deltaapn1apn2中14/23,61%)。与野生型和AP内切核酸酶突变体相比,Mag1缺失与GC > AT转换的显著减少相关。这是首次确定Mag1和/或AP内切核酸酶缺陷对由3-MeA引起的突变谱的影响。结果表明,3-MeA对Me-lex细胞毒性至关重要,并且在没有Mag1糖基化酶活性时其致突变性略有升高,但在没有AP内切核酸酶活性时显著更高。

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