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影响T7 DNA聚合酶核苷酸识别的突变体。

Mutants affecting nucleotide recognition by T7 DNA polymerase.

作者信息

Donlin M J, Johnson K A

机构信息

Department of Biochemistry and Molecular Biology, Pennsylvania State University, University Park 16802.

出版信息

Biochemistry. 1994 Dec 13;33(49):14908-17. doi: 10.1021/bi00253a030.

Abstract

Analysis of two mutations affecting nucleotide selection by the DNA polymerase from bacteriophage T7 is reported here. Two conserved residues (Glu480 and Tyr530) in the polymerase active site of an exonuclease deficient (exo-) T7 DNA polymerase were mutated using site-directed mutagenesis (Glu480-Asp and Tyr530-Phe). The kinetic and equilibrium constants governing DNA binding, nucleotide incorporation, and pyrophosphorolysis were measured with the mutants E480D(exo-) and Y530F(exo-) in single-turnover experiments using rapid chemical quench-flow methods. Both mutants have slightly lower Kd values for DNA binding compared to that of wild-type(exo-). With Y530F(exo-) the ground state nucleotide binding affinity was unchanged from wild-type for dGTP and dCTP, was 2-fold lower for dATP and 8-10-fold lower for dTTP binding. With E480D(exo-), the binding constants were 5-6-fold lower for dATP, dGTP, and dCTP and 40-fold lower for dTTP binding compared to those constants for wild-type(exo-). The significance of a specific destabilization of dTTP binding by these amino acids was examined using a dGTP analog, deoxyinosine triphosphate, which mimics the placement and number of hydrogen bonds of an A:T base pair. The Kd for dCTP opposite inosine was unchanged with wild-type(exo-) (197 microM) but higher with Y530F(exo-) (454 microM) and with E480D(exo-) (1 mM). The Kd for dITP was the same with wild-type(exo-) (180 microM) and Y530F(exo-) (229 microM), but significantly higher with E480D(exo-) (3.2 mM). These data support the suggestion that E480 selectively stabilizes dTTP in the wild-type enzyme, perhaps by hydrogen bonding to the unbonded carbonyl. Data on the incorporation of dideoxynucleotide analogs were consistent with the observation of a selective stabilization of dTTP by both residues. Pyrophosphorolysis experiments revealed that neither mutation had a significant effect on the chemistry of polymerization. The fidelity of the mutants were examined in misincorporation assays. Both E480D(exo-) and Y530F(exo-) showed saturation kinetics with the wrong nucleotide, with binding constants of 1-3 mM compared to the estimated binding affinity of 6-8 mM with wild-type(exo-). Accordingly, both mutants showed slightly lower selectivity against misincorporation. Taken together, these results indicate that E480 and Y530 each contribute to ground state nucleotide binding and suggest that the E480 may serve to specifically stabilize the incoming dTTP of A:T base pairs to compensate for the fewer hydrogen bonds compared to G:C base pairs.

摘要

本文报道了对噬菌体T7 DNA聚合酶中影响核苷酸选择的两个突变的分析。利用定点诱变技术(将谷氨酸480突变为天冬氨酸,酪氨酸530突变为苯丙氨酸),对核酸外切酶缺陷型(exo-)T7 DNA聚合酶活性位点中的两个保守残基(谷氨酸480和酪氨酸530)进行了突变。在单轮实验中,使用快速化学淬灭流动法,对突变体E480D(exo-)和Y530F(exo-)的DNA结合、核苷酸掺入和焦磷酸解的动力学和平衡常数进行了测定。与野生型(exo-)相比,两个突变体与DNA结合的解离常数(Kd)值略低。对于Y530F(exo-),dGTP和dCTP的基态核苷酸结合亲和力与野生型相同,dATP的结合亲和力低2倍,dTTP的结合亲和力低8至10倍。对于E480D(exo-),与野生型(exo-)相比,dATP、dGTP和dCTP的结合常数低5至6倍,dTTP的结合常数低40倍。使用一种dGTP类似物三磷酸脱氧次黄嘌呤核苷来研究这些氨基酸对dTTP结合的特异性去稳定作用的意义,该类似物模拟了A:T碱基对的氢键位置和数量。与肌苷相对的dCTP的Kd值在野生型(exo-)中不变(197微摩尔),但在Y530F(exo-)中较高(454微摩尔),在E480D(exo-)中更高(1毫摩尔)。dITP的Kd值在野生型(exo-)和Y530F(exo-)中相同(180微摩尔),但在E480D(exo-)中显著更高(3.2毫摩尔)。这些数据支持了这样的观点,即谷氨酸480在野生型酶中选择性地稳定dTTP,可能是通过与未结合的羰基形成氢键。双脱氧核苷酸类似物掺入的数据与这两个残基对dTTP进行选择性稳定的观察结果一致。焦磷酸解实验表明,两种突变对聚合反应的化学过程均无显著影响。在错配掺入实验中检测了突变体的保真度。E480D(exo-)和Y530F(exo-)与错误核苷酸均呈现饱和动力学,其结合常数为1至3毫摩尔,而野生型(exo-)的估计结合亲和力为6至8毫摩尔。因此,两种突变体对错配掺入的选择性均略低。综上所述,这些结果表明谷氨酸480和酪氨酸530均有助于基态核苷酸结合,并表明谷氨酸480可能有助于特异性稳定A:T碱基对中进入的dTTP,以补偿与G:C碱基对相比氢键较少的情况。

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