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Networked Communication between Polymerase and Exonuclease Active Sites in Human Mitochondrial DNA Polymerase

机译:聚合酶与人体线粒体DNA聚合酶中的聚合酶和外切核酸酶活性位点的联网通信

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摘要

High fidelity human mitochondrial DNA polymerase (Pol gamma) contains two active sites, a DNA polymerization site (pol) and a 3'-5' exonuclease site (exo) for proofreading. Although separated by 35 angstrom, coordination between the pol and exo sites is crucial to high fidelity replication. The biophysical mechanisms for this coordination are not completely understood. To understand the communication between the two active sites, we used a statistical-mechanical model of the protein ensemble to calculate the energetic landscape and local stability. We compared a series of structures of Pol gamma, complexed with primer/template DNA, and either a nucleotide substrate or a series of nucleotide analogues, which are differentially incorporated and excised by pol and exo activity. Despite the nucleotide or its analogues being bound in the pol, Pol gamma residue stability varied across the protein, particularly in the exo domain. This suggests that substrate presence in the pol can be "sensed" in the exo domain. Consistent with this hypothesis, in silico mutations made in one active site mutually perturbed the energetics of the other. To identify specific regions of the polymerase that contributed to this communication, we constructed an allosteric network connectivity map that further demonstrates specific pol-exo cooperativity. Thus, a cooperative network underlies energetic connectivity. We propose that Pol gamma and other dual-function polymerases exploit an energetic coupling network that facilitates domain-domain communication to enhance discrimination between correct and incorrect nucleotides.
机译:高保真人体线粒体DNA聚合酶(POLγ)含有两个活性位点,DNA聚合位点(POL)和3'-5'外切核酸酶(EXO)用于校对。虽然分离35埃,但POL和EXO位点之间的协调对于高保真复制至关重要。这种协调的生物物理机制并不完全理解。要了解两个有源网站之间的沟通,我们使用蛋白质合奏的统计机械模型来计算能量景观和局部稳定性。我们比较了一系列Polγ的结构,与引物/模板DNA复合,核苷酸底物或一系列核苷酸类似物,其被POL和EXO活性差异掺入和切除。尽管核苷酸或其在POL中束缚的类似物,但POLγ残留物稳定性在蛋白质中变化,特别是在EXO结构域中。这表明可以在EXO结构域中“感测到POL中的基质存在。与这个假设一致,在一个活性位点制成的硅突变中相互扰乱了另一个的能量。为了鉴定有助于这种通信的聚合酶的特定区域,我们构建了一个颠覆网络连接图,进一步证明了特定的POL-EXO合作。因此,合作网络下潜能量连接。我们提出了Polγ和其他双函数聚合酶利用了能量耦合网络,便于域域通信,以增强在正确和不正确的核苷酸之间的歧视。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2019年第27期|10821-10829|共9页
  • 作者单位

    Univ Texas Med Branch MD PhD Combined Degree Program Galveston TX 77555 USA|Univ Texas Med Branch Dept Pharmacol & Toxicol Galveston TX 77555 USA;

    Univ Texas Med Branch Dept Pharmacol & Toxicol Galveston TX 77555 USA|Baylor Coll Med Program Quantitat & Computat Biosci Houston TX USA;

    Johns Hopkins Univ Dept Biol 3400 North Charles St Baltimore MD 21218 USA;

    Univ Texas Med Branch Dept Pharmacol & Toxicol Galveston TX 77555 USA|Univ Texas Med Branch Sealy Ctr Struct Biol Galveston TX 77555 USA|Baylor Coll Med Program Quantitat & Computat Biosci Houston TX USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-18 22:16:41

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