Dizdaroglu M, Burgess S M, Jaruga P, Hazra T K, Rodriguez H, Lloyd R S
Chemical Science and Technology Laboratory, National Institute of Standards and Technology, Gaithersburg, Maryland 20899-8311, USA.
Biochemistry. 2001 Oct 9;40(40):12150-6. doi: 10.1021/bi015552o.
Endonuclease VIII (Nei) is one of three enzymes in Escherichia coli that are involved in base-excision repair of oxidative damage to DNA. We investigated the substrate specificity and excision kinetics of this DNA glycosylase for bases in DNA that have been damaged by free radicals. Two different DNA substrates were prepared by gamma-irradiation of DNA solutions under N(2)O or air, such that they contained a multiplicity of modified bases. Although previous studies on the substrate specificity of Nei had demonstrated activity on several pyrimidine derivatives, this present study demonstrates excision of additional pyrimidine derivatives and a purine-derived lesion, 4,6-diamino-5-formamidopyrimidine, from DNA containing multiple modified bases. Excision was dependent on enzyme concentration, incubation time, and substrate concentration, and followed Michaelis-Menten kinetics. The kinetic parameters also depended on the identity of the individual modified base being removed. Substrates and excision kinetics of Nei and a naturally arising mutant form involving Leu-90-->Ser (L90S-Nei) were compared to those of Escherichia coli endonuclease III (Nth), which had previously been determined under experimental conditions similar to those in this study. This comparison showed that Nei and Nth significantly differ from each other in terms of excision rates, although they have common substrates. The present work extends the substrate specificity of Nei and shows the effect of a single mutation in the nei gene on the specificity of Nei.
核酸内切酶VIII(Nei)是大肠杆菌中参与DNA氧化损伤碱基切除修复的三种酶之一。我们研究了这种DNA糖基化酶对自由基损伤的DNA中碱基的底物特异性和切除动力学。通过在N₂O或空气中对DNA溶液进行γ射线照射制备了两种不同的DNA底物,使其含有多种修饰碱基。尽管先前关于Nei底物特异性的研究已证明其对几种嘧啶衍生物有活性,但本研究表明,从含有多个修饰碱基的DNA中还能切除其他嘧啶衍生物和一种嘌呤衍生的损伤产物4,6 - 二氨基 - 5 - 甲酰胺基嘧啶。切除作用取决于酶浓度、孵育时间和底物浓度,并遵循米氏动力学。动力学参数也取决于被切除的单个修饰碱基的特性。将Nei及其天然产生的Leu - 90→Ser突变形式(L90S - Nei)的底物和切除动力学与大肠杆菌核酸内切酶III(Nth)的进行了比较,Nth的底物和切除动力学先前已在与本研究类似的实验条件下测定。这种比较表明,尽管Nei和Nth有共同的底物,但它们在切除速率方面有显著差异。本研究扩展了Nei的底物特异性,并展示了nei基因中的单个突变对Nei特异性的影响。