Moran S, Ren R X, Kool E T
Department of Chemistry, University of Rochester, Rochester, NY 14627, USA.
Proc Natl Acad Sci U S A. 1997 Sep 30;94(20):10506-11. doi: 10.1073/pnas.94.20.10506.
Compound 1 (F), a nonpolar nucleoside analog that is isosteric with thymidine, has been proposed as a probe for the importance of hydrogen bonds in biological systems. Consistent with its lack of strong H-bond donors or acceptors, F is shown here by thermal denaturation studies to pair very poorly and with no significant selectivity among natural bases in DNA oligonucleotides. We report the synthesis of the 5'-triphosphate derivative of 1 and the study of its ability to be inserted into replicating DNA strands by the Klenow fragment (KF, exo- mutant) of Escherichia coli DNA polymerase I. We find that this nucleotide derivative (dFTP) is a surprisingly good substrate for KF; steady-state measurements indicate it is inserted into a template opposite adenine with efficiency (Vmax/Km) only 40-fold lower than dTTP. Moreover, it is inserted opposite A (relative to C, G, or T) with selectivity nearly as high as that observed for dTTP. Elongation of the strand past F in an F-A pair is associated with a brief pause, whereas that beyond A in the inverted A-F pair is not. Combined with data from studies with F in the template strand, the results show that KF can efficiently replicate a base pair (A-F/F-A) that is inherently very unstable, and the replication occurs with very high fidelity despite a lack of inherent base-pairing selectivity. The results suggest that hydrogen bonds may be less important in the fidelity of replication than commonly believed and that nucleotide/template shape complementarity may play a more important role than previously believed.
化合物1(F)是一种与胸腺嘧啶等排的非极性核苷类似物,已被提议作为研究氢键在生物系统中重要性的探针。与缺乏强氢键供体或受体一致,热变性研究表明,F在DNA寡核苷酸中与天然碱基配对非常差,且没有明显的选择性。我们报道了1的5'-三磷酸衍生物的合成及其被大肠杆菌DNA聚合酶I的Klenow片段(KF,外切酶突变体)插入复制DNA链的能力的研究。我们发现这种核苷酸衍生物(dFTP)是KF出人意料的良好底物;稳态测量表明,它以仅比dTTP低40倍的效率(Vmax/Km)插入与腺嘌呤相对的模板中。此外,它与A配对(相对于C、G或T)时的选择性几乎与dTTP观察到的一样高。在F-A对中,链延伸超过F会伴有短暂停顿,而在反向A-F对中超过A则不会。结合模板链中F的研究数据,结果表明KF可以有效地复制本质上非常不稳定的碱基对(A-F/F-A),并且尽管缺乏固有的碱基配对选择性,但复制仍具有非常高的保真度。结果表明,氢键在复制保真度中的重要性可能比通常认为的要小,并且核苷酸/模板形状互补性可能比以前认为的起更重要的作用。