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Contrasting effects of single stranded DNA binding protein on the activity of uracil DNA glycosylase from Escherichia coli towards different DNA substrates

机译:单链DNA结合蛋白对大肠杆菌中尿嘧啶DNA糖基化酶对不同DNA底物活性的影响

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Excision of uracil from tetraloop hairpins and single stranded (‘unstructured') oligodeoxyribonucleotides by Escherichia coli uracil DNA glycosylase has been investigated. We show that, compared with a single stranded reference substrate, uracil from the first, second, third and the fourth positions of the loops is excised with highly variable efficiencies of 3.21, 0.37, 5.9 and 66.8%, respectively. More importantly, inclusion of E.coli single stranded DNA binding protein (SSB) in the reactions resulted in ~7–140-fold increase in the efficiency of uracil excision from the first, second or the third position in the loop but showed no significant effect on its excision from the fourth position. In contrast, the presence of SSB decreased uracil excision from the single stranded (‘unstructured') substrates ~2–3-fold. The kinetic studies show that the increased efficiency of uracil release from the first, second and the third positions of the tetraloops is due to a combination of both the improved substrate binding and a large increase in the catalytic rates. On the other hand, the decreased efficiency of uracil release from the single stranded substrates (‘unstructured') is mostly due to the lowering of the catalytic rates. Chemical probing with KMnO4 showed that the presence of SSB resulted in the reduction of cleavage of the nucleotides in the vicinity of dUMP residue in single stranded substrates but their increased susceptibility in the hairpin substrates. We discuss these results to propose that excision of uracil from DNA-SSB complexes by uracil DNA glycosylase involves base flipping. The use of SSB in the various applications of uracil DNA glycosylase is also discussed.
机译:已经研究了大肠杆菌尿嘧啶DNA糖基化酶从四环发夹和单链(“非结构化”)寡脱氧核糖核苷酸中切除尿嘧啶的方法。我们显示,与单链参考底物相比,从环的第一,第二,第三和第四位置去除尿嘧啶的效率分别为3.21、0.37、5.9和66.8%。更重要的是,在反应中加入大肠杆菌单链DNA结合蛋白(SSB)可使尿嘧啶从环的第一个,第二个或第三个位置切除的效率提高了约7–140倍,但无显着性从第四位置对其切除的效果。相反,SSB的存在使单链(“非结构化”)底物的尿嘧啶切除率降低了约2-3倍。动力学研究表明,从四环的第一,第二和第三位置释放尿嘧啶的效率提高是由于改善的底物结合和催化速率的大幅提高的结合。另一方面,尿嘧啶从单链底物中释放的效率降低(“非结构化”)主要是由于催化速率降低。用KMnO 4 进行化学探测显示,SSB的存在导致单链底物中dUMP残基附近核苷酸的裂解减少,但它们在发夹底物中的敏感性增加。我们讨论这些结果,以建议通过尿嘧啶DNA糖基化酶从DNA-SSB复合物中切除尿嘧啶涉及碱基翻转。还讨论了SSB在尿嘧啶DNA糖基化酶的各种应用中的用途。

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