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Fapy腺嘌呤是一种对原核生物DNA聚合酶具有中等效率的链终止剂。

Fapyadenine is a moderately efficient chain terminator for prokaryotic DNA polymerases.

作者信息

Graziewicz M A, Zastawny T H, Oliński R, Speina E, Siedlecki J, Tudek B

机构信息

Institute of Biochemistry and Biophysics, Polish Academy of Sciences, Warsaw.

出版信息

Free Radic Biol Med. 2000 Jan 1;28(1):75-83. doi: 10.1016/s0891-5849(99)00208-7.

Abstract

Hypoxanthine¿xanthine oxidase¿Fe3+¿ethylenediaminetetraacetate (EDTA) was used to modify ss M13 mp18 phage DNA. The dominant base modifications found by GC/IDMS-SIM were FapyGua, FapyAde, 8-hydroxyguanine, and thymine glycol. Analysis of in vitro DNA synthesis on oxidatively modified template by three DNA polymerases revealed that T7 DNA polymerase and Klenow fragment of polymerase I from Escherichia coli were blocked mainly by oxidized pyrimidines in the template whereas some purines that were easily bypassed by the prokaryotic polymerases constituted a block for DNA polymerase beta from calf thymus. DNA synthesis by T7 polymerase on poly(dA) template, where FapyAde content increased 16-fold on oxidation, yielded a final product with a discrete ladder of premature termination bands. When DNA synthesis was performed on template from which FapyAde, FapyGua, and 8OHGua were excised by the Fpg protein new chain terminations at adenine and guanine sites appeared or existing ones were enhanced. This suggests that FapyAde, when present in DNA, is a moderately toxic lesion. Its ability to arrest DNA synthesis depends on the sequence context and DNA polymerase. FapyGua might possess similar properties.

摘要

次黄嘌呤-黄嘌呤氧化酶-Fe3+-乙二胺四乙酸(EDTA)被用于修饰单链M13 mp18噬菌体DNA。通过气相色谱/同位素稀释质谱-选择离子监测(GC/IDMS-SIM)发现的主要碱基修饰有Fapy鸟嘌呤(FapyGua)、Fapy腺嘌呤(FapyAde)、8-羟基鸟嘌呤和胸腺嘧啶乙二醇。对三种DNA聚合酶在氧化修饰模板上进行体外DNA合成的分析表明,T7 DNA聚合酶和大肠杆菌DNA聚合酶I的Klenow片段主要被模板中的氧化嘧啶阻断,而一些原核聚合酶容易绕过的嘌呤对小牛胸腺来源的DNA聚合酶β构成了阻断。T7聚合酶在聚(dA)模板上进行DNA合成时,氧化后FapyAde含量增加了16倍,产生了带有离散的提前终止条带阶梯的最终产物。当在通过Fpg蛋白切除了FapyAde、FapyGua和8-羟基鸟嘌呤(8OHGua)的模板上进行DNA合成时,腺嘌呤和鸟嘌呤位点出现了新的链终止,或者现有的链终止得到了增强。这表明FapyAde在DNA中存在时是一种中等毒性的损伤。其阻止DNA合成的能力取决于序列背景和DNA聚合酶。FapyGua可能具有类似的性质。

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