Smirnov Serge, Matray Tracy J, Kool Eric T, de los Santos Carlos
Department of Pharmacological Sciences, State University of New York at Stony Brook, Stony Brook, NY 11794-8651, USA.
Nucleic Acids Res. 2002 Dec 15;30(24):5561-9. doi: 10.1093/nar/gkf688.
DNA polymerases specifically insert the hydrophobic pyrene deoxynucleotide (P) opposite tetrahydrofuran (F), an stable abasic site analog, and DNA duplexes containing this non-hydrogen-bonded pair possess a high degree of thermodynamic stability. These observations support the hypothesis that steric complementarity and stacking interactions may be sufficient for maintaining stability of DNA structure and specificity of DNA replication, even in the absence of hydrogen bonds across the base pair. Here we report the NMR characterization and structure determination of two DNA molecules containing pyrene residues. The first is a 13mer duplex with a pyrene.tetrahydrofuran pair (P.F pair) at the ninth position and the second mimics a replication intermediate right after incorporation of a pyrene nucleoside opposite an abasic site. Our data indicate that both molecules adopt right-handed helical conformations with Watson- Crick alignments for all canonical base pairs. The pyrene ring stays inside the helix close to its baseless partner in both molecules. The single-stranded region of the replication intermediate folds back over the opposing strand, sheltering the hydrophobic pyrene moiety from water exposure. The results support the idea that the stability and replication of a P.F pair is due to its ability to mimic Watson-Crick structure.
DNA聚合酶会特异性地在四氢呋喃(F,一种稳定的无碱基位点类似物)的对面插入疏水性的芘脱氧核苷酸(P),并且含有这种非氢键配对的DNA双链体具有高度的热力学稳定性。这些观察结果支持了这样一种假说,即空间互补性和堆积相互作用可能足以维持DNA结构的稳定性和DNA复制的特异性,即使在碱基对之间不存在氢键的情况下也是如此。在此,我们报告了两个含有芘残基的DNA分子的核磁共振表征和结构测定。第一个是一个13聚体双链体,在第九位有一个芘-四氢呋喃对(P.F对),第二个模拟了在无碱基位点对面掺入芘核苷后紧接着的复制中间体。我们的数据表明,这两个分子都采用右手螺旋构象,所有标准碱基对均符合沃森-克里克配对方式。在这两个分子中,芘环都位于螺旋内部,靠近其无碱基的配对伙伴。复制中间体的单链区域折叠回相对的链上,使疏水性的芘部分免受水的暴露。这些结果支持了这样一种观点,即P.F对的稳定性和复制归因于其模拟沃森-克里克结构的能力。