Kladova Olga A, Kuznetsova Alexandra A, Fedorova Olga S, Kuznetsov Nikita A
Institute of Chemical Biology and Fundamental Medicine (ICBFM), Siberian Branch of Russian Academy of Sciences, Novosibirsk 630090, Russia.
Department of Natural Sciences, Novosibirsk State University, 2 Pirogova St., Novosibirsk 630090, Russia.
Genes (Basel). 2017 May 13;8(5):140. doi: 10.3390/genes8050140.
endonuclease VIII (Endo VIII) is a DNA glycosylase with substrate specificity for a wide range of oxidatively damaged pyrimidine bases. Endo VIII catalyzes hydrolysis of the N-glycosidic bond and β, δ-elimination of 3'- and 5'-phosphate groups of an apurinic/apyrimidinic site. Single mutants of Endo VIII L70S, L70W, Y71W, F121W, F230W, and P253W were analyzed here with the aim to elucidate the kinetic mechanism of protein conformational adjustment during damaged-nucleotide recognition and catalytic-complex formation. F121W substitution leads to a slight reduction of DNA binding and catalytic activity. F230W substitution slows the rate of the δ-elimination reaction indicating that interaction of Phe230 with a 5'-phosphate group proceeds in the latest catalytic step. P253W Endo VIII has the same activity as the wild type (WT) enzyme. Y71W substitution slightly reduces the catalytic activity due to the effect on the later steps of catalytic-complex formation. Both L70S and L70W substitutions significantly decrease the catalytic activity, indicating that Leu70 plays an important role in the course of enzyme-DNA catalytic complex formation. Our data suggest that Leu70 forms contacts with DNA earlier than Tyr71 does. Therefore, most likely, Leu70 plays the role of a DNA lesion "sensor", which is used by Endo VIII for recognition of a DNA damage site.
核酸内切酶VIII(Endo VIII)是一种DNA糖基化酶,对多种氧化损伤的嘧啶碱基具有底物特异性。Endo VIII催化N-糖苷键的水解以及无嘌呤/无嘧啶位点3'-和5'-磷酸基团的β,δ-消除反应。本文分析了Endo VIII的单突变体L70S、L70W、Y71W、F121W、F230W和P253W,旨在阐明受损核苷酸识别和催化复合物形成过程中蛋白质构象调整的动力学机制。F121W取代导致DNA结合和催化活性略有降低。F230W取代减缓了δ-消除反应的速率,表明Phe230与5'-磷酸基团的相互作用发生在催化的最后一步。P253W Endo VIII与野生型(WT)酶具有相同的活性。Y71W取代由于对催化复合物形成后期步骤的影响而略微降低了催化活性。L70S和L70W取代均显著降低了催化活性,表明Leu70在酶-DNA催化复合物形成过程中起重要作用。我们的数据表明,Leu70比Tyr71更早与DNA形成接触。因此,Leu70很可能起到DNA损伤“传感器”的作用,Endo VIII利用它来识别DNA损伤位点。