首页> 外文期刊>DNA repair >A distinct TthMutY bifunctional glycosylase that hydrolyzes not only adenine but also thymine opposite 8-oxoguanine in the hyperthermophilic bacterium, Thermus thermophilus.
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A distinct TthMutY bifunctional glycosylase that hydrolyzes not only adenine but also thymine opposite 8-oxoguanine in the hyperthermophilic bacterium, Thermus thermophilus.

机译:一种独特的TthMutY双功能糖基化酶,不仅可以水解腺嘌呤,而且还可以水解在超嗜热细菌嗜热菌(Thermus thermophilus)中与8-氧代鸟嘌呤相对的胸腺嘧啶。

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摘要

Oxidative damage represents a major threat to genomic stability because the major product of DNA oxidation, 8-oxoguanine (GO), frequently mispairs with adenine during replication. We were interested in finding out how hyperthermophilic bacteria under goes the process of excising mispaired adenine from A/GO to deal with genomic oxidative damage. Herein we report the properties of an Escherichia coli MutY (EcMutY) homolog, TthMutY, derived from a hyperthermophile Thermus thermophilus. TthMutY preferentially excises on A/GO and G/GO mispairs and has additional activities on T/GO and A/G mismatches. TthMutY has significant sequence homology to the A/G and T/G mismatch recognition motifs, respectively, of MutY and Mig.MthI. A substitution from Tyr112 to Ser or Ala (Y112S and Y112A) in the putative thymine-binding site of TthMutY showed significant decrease in DNA glycosylase activity. A mutant form of TthMutY, R134K, could form a Schiff base with DNA and fully retained its DNA glycosylase activity against A/GO and A/G mispair. Interestingly, although TthMutY cannot form a trapped complex with substrate in the presence of NaBH(4), it expressed AP lyase activity, suggesting Tyr112 in TthMutY may be the key residue for AP lyase activity. These results suggest that TthMutY may be an example of a novel class of bifunctional A/GO mismatch DNA glycosylase that can also remove thymine from T/GO mispair.
机译:氧化损伤代表了对基因组稳定性的主要威胁,因为DNA氧化的主要产物8-氧鸟嘌呤(GO)在复制过程中经常与腺嘌呤错配。我们感兴趣的是寻找正在从A / GO切除配对错误的腺嘌呤以应对基因组氧化损伤的过程中的嗜热菌。本文中,我们报告了从嗜热嗜热菌嗜热菌(Thermus thermophilus)衍生的大肠杆菌MutY(EcMutY)同源物TthMutY的特性。 TthMutY优先消除A / GO和G / GO的不匹配,并有其他活动解决T / GO和A / G的不匹配。 TthMutY与MutY和Mig.MthI的A / G和T / G错配识别基序分别具有明显的序列同源性。在TthMutY的假定的胸腺嘧啶结合位点中从Tyr112取代为Ser或Ala(Y112S和Y112A)表明DNA糖基化酶活性显着降低。 TthMutY的突变形式R134K可以与DNA形成席夫碱,并完全保留其针对A / GO和A / G错配的DNA糖基化酶活性。有趣的是,尽管在存在NaBH(4)的情况下TthMutY无法与底物形成被困的复合物,但它表达了AP裂解酶的活性,这表明TthMutY中的Tyr112可能是AP裂解酶活性的关键残基。这些结果表明,TthMutY可能是一类新型的双功能A / GO错配DNA糖基化酶,也可以从T / GO错配中去除胸腺嘧啶。

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