首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Conformational Changes during Nucleotide Selection by Sulfolobus solfataricus DNA Polymerase Dpo4
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Conformational Changes during Nucleotide Selection by Sulfolobus solfataricus DNA Polymerase Dpo4

机译:在Sulfolobus solfataricus DNA聚合酶Dpo4选择核苷酸过程中的构象变化。

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摘要

The mechanism of nucleotide selection by Y-family DNA polymerases has been the subject of intense study, but significant structural contacts and/or conformational changes that relate to polymerase fidelity have been difficult to identify. Here we report on the conformational dynamics of a model Y-family polymerase Dpo4 from Sulfolobus solfataricus. Hydrogen-deuterium exchange in tandem with mass spectrometry was used to monitor changes in Dpo4 structure as a function of time and the presence or absence of specific substrates and ligands. Analysis of the data revealed previously unrecognized structural changes that accompany steps in the catalytic cycle leading up to phosphoryl transfer. For example, the solvent accessibility of the αB-loop-αC region in the finger domain decreased in the presence of all four dNTP insertion events, but the rate of deuterium exchange, an indicator of conformational flexibility, only decreased during an accurate insertion event. Of particular note is a change in the region surrounding the H-helix of the thumb domain. Upon binding DNA and Mg2+, the H-helix showed a decrease in solvent accessibility and flexibility that was relaxed only upon addition of dCTP, which forms a Watson-Crick base pair with template dG and not during mispairing events. The current study expands upon a previous report from our group that used a fluorescent probe located near the thumb domain to measure the kinetic properties of Dpo4 conformational changes. We now present a model for nucleotide selection by Dpo4 that arises from a synthesis of both structural and kinetic data.
机译:Y家族DNA聚合酶进行核苷酸选择的机制一直是研究的主题,但是与聚合酶保真度相关的显着结构接触和/或构象变化却很难确定。在这里,我们报告从Sulfolobus solfataricus模型Y家庭聚合酶Dpo4的构象动力学。氢-氘交换与质谱联用用于监测Dpo4结构随时间的变化以及特定底物和配体的存在与否。对数据的分析揭示了先前无法识别的结构变化,伴随着导致磷酸基转移的催化循环中的步骤。例如,在所有四个dNTP插入事件均存在的情况下,指状域中αB-环-αC区的溶剂可及性下降,但氘交换速率(构象柔性的指标)仅在准确的插入事件期间下降。特别要注意的是拇指区域H螺旋周围区域的变化。结合DNA和Mg 2 + 后,H螺旋显示出溶剂可及性和柔韧性下降,只有在加入dCTP时才放松,后者与模板dG形成沃森-克里克碱基对,而在加入配对错误事件。当前的研究扩展了我们小组先前的报告,该报告使用了位于拇指域附近的荧光探针来测量Dpo4构象变化的动力学特性。现在,我们提出由Dpo4进行核苷酸选择的模型,该模型是由结构和动力学数据的综合产生的。

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