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The Structure of an Archaeal B-Family DNA Polymerase in Complex with a Chemically Modified Nucleotide

机译:与化学修饰的核苷酸复合物的古物B家族DNA聚合酶的结构

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摘要

Archaeal B-family DNA polymerases (DNA pols) are the driving force of cutting-edge biotechnological applications like next-generation sequencing. The acceptance of chemically modified nucleotides by DNA pols is key to these technologies. Until now, no structural data have been available for these DNA pols in complex with modified substrates, which could build the basis for understanding interactions between the enzyme and the chemically modified nucleotide and for the further development of next-generation nucleotides. For the first time, we crystallized an exonuclease-deficient variant of the wild-type B-family KOD DNA pol with a modified nucleotide in a closed, ternary complex. We also crystalized the A-family DNA pol KlenTaq with the same nucleotide. The reported structural data reveal how the protein and the DNA modulate two distinct conformations of the appended moiety in the A- and B-family DNA pols and how these influence the processing of the modified nucleotide. Overall, this study provides first insight into the interplay between B-family DNA pols and relevant modified substrates.
机译:Archaeal B家族DNA聚合酶(DNA POL)是尖端生物技术应用的驱动力,如下一代测序。 DNA Pols的化学修饰的核苷酸的接受是这些技术的关键。到目前为止,没有修饰的基质,这些DNA污染物的这些DNA极性没有可用于理解酶和化学修饰的核苷酸之间的相互作用的基础和用于进一步发展的下一代核苷酸的基础。我们首次结晶了野生型B家族KOD DNA POL的外切核酸酶缺乏变体,其在封闭的三元复合物中具有修饰的核苷酸。我们还用相同的核苷酸结晶A家族DNA Pol Klentaq。报告的结构数据揭示了蛋白质和DNA如何调节A-和B系列DNA Pols中所附部分的两个不同构象,以及这些核苷酸的处理如何影响改性核苷酸的处理。总体而言,本研究首先深入了解B系列DNA POL和相关改性基材之间的相互作用。

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