首页> 外文期刊>Biochemistry >Effect of the oxidized guanosine lesions spiroiminodihydantoin and guanidinohydantoin on proofreading by Escherichia coli DNA polymerase I (Klenow fragment) in different sequence contexts.
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Effect of the oxidized guanosine lesions spiroiminodihydantoin and guanidinohydantoin on proofreading by Escherichia coli DNA polymerase I (Klenow fragment) in different sequence contexts.

机译:氧化鸟苷损伤螺旋体二乙内酰脲和胍基乙内酰脲对大肠杆菌DNA聚合酶I(Klenow片段)在不同序列背景下校对的影响。

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摘要

Oxidative damage to DNA by endogenous and exogenous reactive oxygen species has been directly linked to cancer, aging, and a variety of neurological disorders. The potential mutagenicity of the primary guanine oxidation product 8-oxo-7,8-dihydroguanine (Og) has been studied intensively, and much information is available about its miscoding potential in vitro and in vivo. Recently, a variety of DNA lesions have been identified as oxidation products of both guanine and 8-oxoguanine, among them spiroiminodihydantoin (Sp) and guanidinohydantoin (Gh). To address questions concerning the mutagenic potential of these secondary products of guanine oxidation, the effect of the lesions on proofreading by DNA polymerase was studied in vitro using the Klenow fragment of Escherichia coli polymerase I (Kf exo+). For the first time, k(cat)/K(m) values were obtained for proofreading of the X:N mismatches (X = Og, Gh, or Sp; N = A, G, or C). Proofreading studies of the terminal mismatches demonstrated the significance of the sequence context flanking the lesion on the 3' side. In addition, a sequence dependence was observed for Gh based on the identity of the base on the 5' side of the lesion providing evidence for a primer slippage mode if N was complementary to the 5' base. Internal mismatches were recognized by Kf exo+ resulting in the excision of the correct base pairs flanking mismatches from the 5' side. The absence of a sequence effect for the Gh- and Sp-containing duplexes can be attributed to the severe destabilization of the lesion-containing duplexes that promotes interaction with the exonuclease domain of the Klenow fragment.
机译:内源性和外源性活性氧对DNA的氧化损伤与癌症,衰老和多种神经系统疾病直接相关。主要的鸟嘌呤氧化产物8-oxo-7,8-dihydroguanine(Og)的潜在致突变性已得到深入研究,并且在体外和体内都有许多关于其误编码潜力的信息。近来,已鉴定出多种DNA损伤是鸟嘌呤和8-氧鸟嘌呤的氧化产物,其中包括螺二氨基乙内酰脲(Sp)和胍基乙内酰脲(Gh)。为了解决有关鸟嘌呤氧化这些次级产物诱变潜力的问题,使用大肠杆菌聚合酶I(Kf exo +)的Klenow片段在体外研究了病变对DNA聚合酶校对的影响。首次获得k(cat)/ K(m)值,用于校对X:N不匹配(X = Og,Gh或Sp; N = A,G或C)。对末端错配的校对研究证明了位于3'侧病变侧翼的序列背景的重要性。另外,基于病变5'侧碱基的同一性,观察到了Gh的序列依赖性,如果N与5'碱基互补,则提供了引物滑动模式的证据。内部错配被Kf exo +识别,从而从5'侧切除了侧翼错配的正确碱基对。含Gh和Sp的双链体没有序列效应的原因可归因于含损伤的双链体的严重失稳,其促进了与Klenow片段的核酸外切酶结构域的相互作用。

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