Department of Chemistry, Lomonosov Moscow State University, Leninskie Gory 1, 119991 Moscow, Russia.
Institute of Chemical Biology and Fundamental Medicine, Siberian Branch of Russian Academy of Sciences, Lavrentiev Avenue 8, 630090 Novosibirsk, Russia.
Biomolecules. 2021 Sep 28;11(10):1420. doi: 10.3390/biom11101420.
Nicking endonucleases (NEs) are enzymes that incise only one strand of the duplex to produce a DNA molecule that is 'nicked' rather than cleaved in two. Since these precision tools are used in genetic engineering and genome editing, information about their mechanism of action at all stages of DNA recognition and phosphodiester bond hydrolysis is essential. For the first time, fast kinetics of the Nt.BspD6I interaction with DNA were studied by the stopped-flow technique, and changes of optical characteristics were registered for the enzyme or DNA molecules. The role of divalent metal cations was estimated at all steps of Nt.BspD6I-DNA complex formation. It was demonstrated that divalent metal ions are not required for the formation of a non-specific complex of the protein with DNA. Nt.BspD6I bound five-fold more efficiently to its recognition site in DNA than to a random DNA. DNA bending was confirmed during the specific binding of Nt.BspD6I to a substrate. The optimal size of Nt.BspD6I's binding site in DNA as determined in this work should be taken into account in methods of detection of nucleic acid sequences and/or even various base modifications by means of NEs.
尼克内切核酸酶(NEs)是一种仅在双链体的一条链上切割的酶,从而产生一种“切口”而不是在两条链上切割的 DNA 分子。由于这些精密工具被用于基因工程和基因组编辑,因此有关其在 DNA 识别和磷酸二酯键水解的所有阶段的作用机制的信息是必不可少的。首次使用停流技术研究了 Nt.BspD6I 与 DNA 的快速动力学相互作用,并记录了酶或 DNA 分子的光学特性变化。在 Nt.BspD6I-DNA 复合物形成的所有步骤中都评估了二价金属阳离子的作用。结果表明,形成蛋白质与 DNA 的非特异性复合物不需要二价金属离子。Nt.BspD6I 与其识别位点的 DNA 结合的效率比与随机 DNA 结合的效率高五倍。在 Nt.BspD6I 与底物特异性结合期间,证实了 DNA 弯曲。在这项工作中确定的 Nt.BspD6I 在 DNA 中的最佳结合位点大小应在通过 NEs 检测核酸序列和/或甚至各种碱基修饰的方法中加以考虑。