Kladova Olga A, Krasnoperov Lev N, Kuznetsov Nikita A, Fedorova Olga S
Institute of Chemical Biology and Fundamental Medicine (ICBFM), 630090 Novosibirsk, Russia.
Department of Natural Sciences, Novosibirsk State University, 630090 Novosibirsk, Russia.
Genes (Basel). 2018 Mar 30;9(4):190. doi: 10.3390/genes9040190.
Endonuclease III (Endo III or Nth) is one of the key enzymes responsible for initiating the base excision repair of oxidized or reduced pyrimidine bases in DNA. In this study, a thermodynamic analysis of structural rearrangements of the specific and nonspecific DNA-duplexes during their interaction with Endo III is performed based on stopped-flow kinetic data. 1,3-diaza-2-oxophenoxazine (tC), a fluorescent analog of the natural nucleobase cytosine, is used to record multistep DNA binding and lesion recognition within a temperature range (5-37 °C). Standard Gibbs energy, enthalpy, and entropy of the specific steps are derived from kinetic data using Van't Hoff plots. The data suggest that enthalpy-driven exothermic 5,6-dihydrouracil (DHU) recognition and desolvation-accompanied entropy-driven adjustment of the enzyme-substrate complex into a catalytically active state play equally important parts in the overall process. The roles of catalytically significant amino acids Lys120 and Asp138 in the DNA lesion recognition and catalysis are identified. Lys120 participates not only in the catalytic steps but also in the processes of local duplex distortion, whereas substitution Asp138Ala leads to a complete loss of the ability of Endo III to distort a DNA double chain during enzyme-DNA complex formation.
核酸内切酶III(Endo III或Nth)是负责启动DNA中氧化或还原嘧啶碱基碱基切除修复的关键酶之一。在本研究中,基于停流动力学数据,对特异性和非特异性DNA双链体与Endo III相互作用过程中的结构重排进行了热力学分析。1,3 - 二氮杂 - 2 - 氧代吩恶嗪(tC),天然核碱基胞嘧啶的荧光类似物,用于记录温度范围(5 - 37°C)内的多步DNA结合和损伤识别。使用范特霍夫图从动力学数据中推导特定步骤的标准吉布斯自由能、焓和熵。数据表明,焓驱动的放热5,6 - 二氢尿嘧啶(DHU)识别以及伴随去溶剂化的熵驱动的酶 - 底物复合物向催化活性状态的调整在整个过程中起着同等重要的作用。确定了具有催化意义的氨基酸Lys120和Asp138在DNA损伤识别和催化中的作用。Lys120不仅参与催化步骤,还参与局部双链扭曲过程,而Asp138Ala取代导致Endo III在酶 - DNA复合物形成过程中使DNA双链扭曲的能力完全丧失。