Yue Hongwei, Zhu Yanyan, Wang Yan, Chen Guangju
College of Chemistry, Beijing Normal University, Beijing100875, China.
BMC Struct Biol. 2010 Oct 17;10:35. doi: 10.1186/1472-6807-10-35.
Copper nucleases as a famous class of artificial metallonucleases have attracted considerable interest in relation to their diverse potentials not only as therapeutic agents but also in genomic researches. Copper nucleases present high efficient oxidative cleavage of DNA, in which DNA strand scission occurs generally after hydrogen atom abstracted from a sugar moiety. In order to achieve the selective cleavage of DNA sequences by copper nucleases, the DNA specific recognition agents of the Dervan-type hairpin and cyclic polyamides can be considered as proper carriers of copper nucleases. Investigation of the DNA cleavage selectivity of copper nucleases assisted by the hairpin and cyclic polyamides at the molecular level has not yet been elucidated.
We carried out a series of molecular dynamics simulations for the nuclease [Cu(BPA)]2+ or [Cu(IDB)]2+ bound to the hairpin/cyclic polyamide and associated with DNA to investigate the selective DNA cleavage properties of Cu(II)-based artificial nucleases. The simulated results demonstrate that the DNA cleavage selectivity of the two nucleases assisted by the hairpin polyamide is improved efficiently. The [Cu(BPA)]2+ or [Cu(IDB)]2+ nuclease with a substrate OOH- bound to the hairpin polyamide can be stably located at the minor groove of DNA, and possibly abstracts H atom from the sugar of DNA. However, the DNA cleavage properties of the two nucleases assisted by the cyclic polyamide are significantly poor due to the rigidity of linking region between the cyclic polyamide and nuclease. With introduction of the flexible linker -CH2CH2CH2NH2, the modified cyclic polyamide can assist the two copper nucleases to improve the selective DNA cleavage properties efficiently.
A flexible linker and a proper binding site of the polyamide-type recognition agents play an important role in improving the DNA cleavage selectivity of copper nucleases. Current investigations provide an insight into the DNA cleavage specificities of chemical nucleases assisted by an appropriate nucleic acid recognition agent.
铜核酸酶作为一类著名的人工金属核酸酶,因其不仅作为治疗剂而且在基因组研究中的多种潜在应用而引起了相当大的兴趣。铜核酸酶能够高效地氧化切割DNA,其中DNA链断裂通常发生在从糖部分夺取氢原子之后。为了实现铜核酸酶对DNA序列的选择性切割,Dervan型发夹和环状聚酰胺等DNA特异性识别剂可被视为铜核酸酶的合适载体。在分子水平上对发夹和环状聚酰胺辅助下铜核酸酶的DNA切割选择性的研究尚未阐明。
我们对与发夹/环状聚酰胺结合并与DNA相关的核酸酶[Cu(BPA)]2+或[Cu(IDB)]2+进行了一系列分子动力学模拟,以研究基于Cu(II)的人工核酸酶的选择性DNA切割特性。模拟结果表明,发夹聚酰胺辅助下的两种核酸酶的DNA切割选择性得到了有效提高。与底物OOH-结合的发夹聚酰胺的[Cu(BPA)]2+或[Cu(IDB)]2+核酸酶可以稳定地定位在DNA的小沟中,并可能从DNA的糖中夺取H原子。然而,由于环状聚酰胺与核酸酶之间连接区域的刚性,环状聚酰胺辅助下的两种核酸酶的DNA切割特性明显较差。通过引入柔性连接子-CH2CH2CH2NH2,修饰后的环状聚酰胺可以辅助两种铜核酸酶有效提高选择性DNA切割特性。
柔性连接子和聚酰胺型识别剂的合适结合位点在提高铜核酸酶的DNA切割选择性方面起着重要作用。目前的研究为合适的核酸识别剂辅助下化学核酸酶的DNA切割特异性提供了深入了解。