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首页> 外文期刊>Angewandte Chemie >Sequence-Specific Incorporation of Enzyme-Nucleotide Chimera by DNA Polymerases
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Sequence-Specific Incorporation of Enzyme-Nucleotide Chimera by DNA Polymerases

机译:DNA聚合酶的酶-核苷酸嵌合体的序列特异性掺入

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摘要

DNA polymerases select the right nucleotide for the growing polynucleotide chain based on the shape and geometry of the nascent nucleotide pairs and thereby ensure high DNA replication selectivity. High-fidelity DNA polymerases are believed to possess tight active sites that allow little deviation from the canonical structures. However, DNA polymerases are known to use nucleotides with small modifications as substrates, which is key for numerous core biotechnology applications. We show that even high-fidelity DNA polymerases are capable of efficiently using nucleotide chimera modified with a large protein like horseradish peroxidase as substrates for template-dependent DNA synthesis, despite this "cargo" being more than 100-fold larger than the natural substrates. We exploited this capability for the development of systems that enable naked-eye detection of DNA and RNA at single nucleotide resolution.
机译:DNA聚合酶根据新生核苷酸对的形状和几何形状为增长的多核苷酸链选择合适的核苷酸,从而确保高DNA复制选择性。据信高保真DNA聚合酶具有紧密的活性位点,几乎不偏离规范结构。然而,已知DNA聚合酶使用具有小的修饰的核苷酸作为底物,这对于许多核心生物技术应用而言是关键的。我们显示,即使高保真DNA聚合酶也能够有效地使用经大蛋白(如辣根过氧化物酶)修饰的核苷酸嵌合体作为模板依赖性DNA合成的底物,尽管这种“货物”比天然底物大100倍以上。我们利用此功能来开发系统,从而可以单核苷酸分辨率用肉眼检测DNA和RNA。

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