首页> 美国卫生研究院文献>Nucleic Acids Research >The yeast 8-oxoguanine DNA glycosylase (Ogg1) contains a DNA deoxyribophosphodiesterase (dRpase) activity.
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The yeast 8-oxoguanine DNA glycosylase (Ogg1) contains a DNA deoxyribophosphodiesterase (dRpase) activity.

机译:酵母8-氧鸟嘌呤DNA糖基化酶(Ogg1)具有DNA脱氧核糖磷酸二酯酶(dRpase)活性。

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摘要

The yeast OGG1 gene was recently cloned and shown to encode a protein that possesses N-glycosylase/AP lyase activities for the repair of oxidatively damaged DNA at sites of 7,8-dihydro-8-oxoguanine (8-oxoguanine). Similar activities have been identified for Escherichia coli formamidopyrimidine-DNA glycosylase (Fpg) and Drosophila ribosomal protein S3. Both Fpg and S3 also contain a deoxyribophosphodiesterase (dRpase) activity that removes 2-deoxyribose-5-phosphate at an incised 5' apurinic/apyrimidinic (AP) sites via a beta-elimination reaction. Drosophila S3 also has an additional activity that removes trans-4-hydroxy-2-pentenal-5-phosphate at a 3' incised AP site by a Mg2+-dependent hydrolytic mechanism. In view of the substrate similarities between Ogg1, Fpg and S3 at the level of base excision repair, we examined whether Ogg1 also contains dRpase activities. A glutathione S-transferase fusion protein of Ogg1 was purified and subsequently found to efficiently remove sugar-phosphate residues at incised 5' AP sites. Activity was also detected for the Mg2+-dependent removal of trans -4-hydroxy-2-pentenal-5-phosphate at 3' incised AP sites and from intact AP sites. Previous studies have shown that DNA repair proteins that possess AP lyase activity leave an inefficient DNA terminus for subsequent DNA synthesis steps associated with base excision repair. However, the results presented here suggest that in the presence of MgCl2, Ogg1 can efficiently process 8-oxoguanine so as to leave a one nucleotide gap that can be readily filled in by a DNA polymerase, and importantly, does not therefore require additional enzymes to process trans -4-hydroxy-2-pentenal-5-phosphate left at a 3' terminus created by a beta-elimination catalyst.
机译:最近克隆了酵母OGG1基因,显示出其编码的蛋白质具有N-糖基化酶/ AP裂解酶活性,可修复7,8-二氢-8-氧鸟嘌呤(8-氧鸟嘌呤)位点的氧化损伤DNA。对于大肠杆菌甲酰胺基嘧啶-DNA糖基化酶(Fpg)和果蝇核糖体蛋白S3,已经确定了类似的活性。 Fpg和S3都还具有脱氧核糖磷酸二酯酶(dRpase)活性,该活性通过β-消除反应在切开的5'嘌呤/嘧啶酮(AP)位点去除了2-脱氧核糖-5-磷酸。果蝇S3还具有额外的活性,该活性通过Mg2 +依赖性水解机制在3'切开的AP位点去除反式-4-羟基-2-戊烯基-5-磷酸。鉴于在碱基切除修复水平上Ogg1,Fpg和S3之间的底物相似性,我们检查了Ogg1是否还包含dRpase活性。纯化Ogg1的谷胱甘肽S-转移酶融合蛋白,随后发现其可有效去除切口5'AP位点的糖磷酸残基。还检测了在3'切开的AP位点和完整AP位点上Mg2 +依赖性反式-4-羟基-2-戊烯基-5-磷酸的Mg2 +去除作用。先前的研究表明,具有AP裂解酶活性的DNA修复蛋白在与碱基切除修复相关的后续DNA合成步骤中留下了无效的DNA末端。但是,此处显示的结果表明,在存在MgCl2的情况下,Ogg1可以有效地处理8-氧代鸟嘌呤,从而留下一个核苷酸缺口,该缺口很容易被DNA聚合酶填补,因此重要的是,因此不需要其他酶即可处理由β-消除催化剂产生的3'末端的反式-4-羟基-2-戊烯基-5-磷酸。

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