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二氟甲苯核苷酸残基对面不同 dNMPs 的插入动力学的结构基础。

Structural basis for differential insertion kinetics of dNMPs opposite a difluorotoluene nucleotide residue.

机构信息

Department of Molecular Biophysics and Biochemistry, Yale University, New Haven, Connecticut 06520-8114, United States.

出版信息

Biochemistry. 2012 Feb 21;51(7):1476-85. doi: 10.1021/bi2016487. Epub 2012 Feb 8.

Abstract

We have recently challenged the widely held view that 2,4-difluorotoluene (dF) is a nonpolar isosteric analogue of the nucleotide dT, incapable of forming hydrogen bonds (HBs). To gain a further understanding for the kinetic preference that favors dAMP insertion opposite a templating dF, a result that mirrors the base selectivity that favors dAMP insertion opposite dT by RB69 DNA polymerase (RB69pol), we determined presteady-state kinetic parameters for incorporation of four dNMPs opposite dF by RB69pol and solved the structures of corresponding ternary complexes. We observed that both the F2 and F4 substituent of dF in these structures serve as HB acceptors forming HBs either directly with dTTP and dGTP or indirectly with dATP and dCTP via ordered water molecules. We have defined the shape and chemical features of each dF/dNTP pair in the RB69pol active site without the corresponding phosphodiester-linkage constraints of dF/dNs when they are embedded in isolated DNA duplexes. These features can explain the kinetic preferences exhibited by the templating dF when the nucleotide incorporation is catalyzed by wild type RB69pol or its mutants. We further show that the shapes of the dNTP/dF nascent base pair differ markedly from the corresponding dNTP/dT in the pol active site and that these differences have a profound effect on their incorporation efficiencies.

摘要

我们最近对 2,4-二氟甲苯(dF)是非核苷酸 dT 的极性等排类似物、不能形成氢键(HBs)的普遍观点提出了挑战。为了更深入地了解动力学偏好,即有利于 dAMP 插入到模板 dF 对面的偏好,这一结果反映了 RB69 DNA 聚合酶(RB69pol)有利于 dAMP 插入到 dT 对面的碱基选择性,我们确定了 RB69pol 插入四个 dNMP 对面 dF 的准稳态动力学参数,并解决了相应的三元复合物结构。我们观察到,这些结构中 dF 的 F2 和 F4 取代基都作为 HB 受体,直接与 dTTP 和 dGTP 形成 HBs,或通过有序水分子间接地与 dATP 和 dCTP 形成 HBs。我们在没有 dF/dNs 相应磷酸二酯键约束的情况下,定义了 RB69pol 活性位点中每个 dF/dNTP 对的形状和化学特征,当它们嵌入孤立的 DNA 双链体中时。这些特征可以解释野生型 RB69pol 或其突变体催化核苷酸掺入时模板 dF 表现出的动力学偏好。我们进一步表明,dNTP/dF 新生碱基对的形状与 pol 活性位点中相应的 dNTP/dT 明显不同,这些差异对它们的掺入效率有深远的影响。

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