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A kinetic analysis of substrate recognition by uracil-DNA glycosylase from herpes simplex virus type 1

机译:尿嘧啶-DNA糖基化酶对1型单纯疱疹病毒的底物识别的动力学分析

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Uracil-DNA glycosylase (UDG) is responsible for the removal of uracil from DNA. It has previously been demonstrated that UDG exhibits some sequence dependence in its activity, although this has not been well characterised. This study has investigated the sequence-dependent activity of UDG from herpes simplex virus type-1 (HSV-1). A more detailed analysis has been possible by using both kinetic and binding assays with a variety of different oligonucleotide substrates. The target uracil has been placed in substrates with either A-T-rich or G-C-rich flanking sequences and analyses have been performed on both the single- and double-stranded forms of each substrate. In the latter the uracil has been placed in both a U·A base pair and a U.G mismatch. It is observed that the sequences flanking the target uracil have a greater effect on UDG activity than the partner base of the uracil. Furthermore, the sequence context effects extend to single-stranded DNA. Systematic examination of the kinetics and binding of UDG with these different substrates has enabled us to examine the origin of the sequence preferences. We conclude that the damage recognition step in the HSV-1 UDG reaction pathway is modulated by local DNA sequence.
机译:尿嘧啶-DNA糖基化酶(UDG)负责从DNA中去除尿嘧啶。先前已经证明,UDG在其活性中表现出一定的序列依赖性,尽管尚未很好地表征。这项研究调查了单纯疱疹病毒1型(HSV-1)的UDG的序列依赖性活性。通过对多种不同的寡核苷酸底物进行动力学和结合分析,可以进行更详细的分析。已将靶尿嘧啶置于富含A-T或富含G-C的侧翼序列的基质中,并对每种基质的单链和双链形式均进行了分析。在后者中,尿嘧啶被置于U·A碱基对和UG错配中。观察到,靶尿嘧啶侧翼的序列比尿嘧啶的伴侣碱基对UDG活性的影响更大。此外,序列上下文效应扩展到单链DNA。对UDG动力学和与这些不同底物的结合的系统检查使我们能够检查序列偏好的起源。我们得出结论,HSV-1 UDG反应途径中的损伤识别步骤受局部DNA序列调节。

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