Yoshida K, Tosaka A, Kamiya H, Murate T, Kasai H, Nimura Y, Ogawa M, Yoshida S, Suzuki M
Division of Surgical Oncology, Department of Surgery and Laboratory of Cancer Cell Biology, Research Institute for Disease Mechanism and Control, Nagoya University Graduate School of Medicine, Tsurmai-cho, Showa-ku, Nagoya 466-8550, Japan.
Nucleic Acids Res. 2001 Oct 15;29(20):4206-14. doi: 10.1093/nar/29.20.4206.
We examined the replication fidelity of an Arg660Ser (R660S) mutant of Thermus aquaticus DNA polymerase I (Taq pol I). In a forward mutation assay, R660S showed a marked reduction in T-->C transitions, one of the most frequent errors made by the wild-type enzyme. Steady-state kinetics showed that R660S discriminates against dGTP incorporation at a template T 13-fold better than the wild-type. R660S was also 3.2-fold less efficient than the wild-type at extending a T:dG mismatch. These results indicate that R660S has enhanced fidelity during incorporation and extension, which reduces its T-->C transition frequency. Interestingly, R660S also discriminated correct from incorrect nucleotides at the incorporation step of C:dATP, A:dATP, G:dATP and C:8-OH-dGTP mispairs 28-, 6.0-, 4.1- and 6.8-fold better, respectively, than the wild-type, although it may not always be as accurate as the wild-type at the extension step. A structural model suggests that Arg660 may participate in two interactions that influence fidelity; the guanidinium group of Arg660 might interact with the incoming guanine base at the major groove and it might compete for forming another interaction with the primer terminus. Substituting Arg with Ser may eliminate or alter these interactions and destabilize the closed complex with incorrect substrates. Our data also suggest that T:dGTP and C:dATP base pairs form 'wobble' structures at the incorporation step of Taq pol I.
我们检测了嗜热水生栖热菌DNA聚合酶I(Taq pol I)的Arg660Ser(R660S)突变体的复制保真度。在正向突变试验中,R660S在T→C转换方面表现出显著降低,T→C转换是野生型酶最常出现的错误之一。稳态动力学表明,R660S在模板T处对dGTP掺入的识别能力比野生型高13倍。在延伸T:dG错配时,R660S的效率也比野生型低3.2倍。这些结果表明,R660S在掺入和延伸过程中保真度增强,这降低了其T→C转换频率。有趣的是,在C:dATP、A:dATP、G:dATP和C:8-OH-dGTP错配的掺入步骤中,R660S分别比野生型更能准确区分正确与错误的核苷酸,倍数分别为28倍、6.0倍、4.1倍和6.8倍,尽管在延伸步骤中它可能并不总是像野生型那样准确。一个结构模型表明,Arg660可能参与了两种影响保真度的相互作用;Arg660的胍基可能在大沟处与进入的鸟嘌呤碱基相互作用,并且它可能竞争与引物末端形成另一种相互作用。用Ser取代Arg可能会消除或改变这些相互作用,并使与错误底物形成的封闭复合物不稳定。我们的数据还表明,在Taq pol I的掺入步骤中,T:dGTP和C:dATP碱基对形成“摆动”结构。