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Facilitation of Polymerase Chain Reaction with Poly(ethylene glycol) Engrafted Graphene Oxide Analogous to a Single-Stranded-DNA Binding Protein

机译:类似于单链DNA结合蛋白的聚乙二醇嫁接的氧化石墨烯的聚合酶链反应的促进。

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摘要

Polymerase chain reaction (PCR), a versatile DNA amplification method, is a fundamental technology in modern life sciences and molecular diagnostics. After multiple rounds of PCR, however, nonspecific DNA fragments are often produced and the amplification efficiency and fidelity decrease. Here, we demonstrated that poly(ethylene glycol)-engrafted nanosized graphene oxide (PEG-nGO) can significantly improve the PCR specificity and efficiency. PEG-nGO allows the specificity to be maintained even after multiple rounds of PCR, allowing reliable amplification at low annealing temperatures. PEG-nGO decreases the nonspecific annealing of single-stranded DNA (ssDNA), such as primer dimerization and false priming, by adsorbing excess primers. Moreover, PEG-nGO interrupts the reannealing of denatured template DNA by preferentially binding to ssDNA. Thus, PEG-nGO enhances the PCR specificity by preferentially binding to ssDNA without inhibiting DNA polymerase, which is analogous to the role of ssDNA binding proteins.
机译:聚合酶链反应(PCR)是一种通用的DNA扩增方法,是现代生命科学和分子诊断中的一项基本技术。然而,在多轮PCR之后,经常产生非特异性DNA片段,并且扩增效率和保真度降低。在这里,我们证明了聚乙二醇接枝的纳米氧化石墨烯(PEG-nGO)可以显着提高PCR的特异性和效率。 PEG-nGO甚至在经过多轮PCR后仍可保持特异性,从而可在低退火温度下可靠扩增。 PEG-nGO通过吸附多余的引物来减少单链DNA(ssDNA)的非特异性退火,例如引物二聚和错误引物。此外,PEG-nGO通过优先结合ssDNA来中断变性模板DNA的重新退火。因此,PEG-nGO通过优先结合ssDNA而不抑制DNA聚合酶来增强PCR特异性,这类似于ssDNA结合蛋白的作用。

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