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首页> 外文期刊>Analytical chemistry >Nanopore-Based DNA-Probe Sequence-Evolution Method Unveiling Characteristics of Protein-DNA Binding Phenomena in a Nanoscale Confined Space
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Nanopore-Based DNA-Probe Sequence-Evolution Method Unveiling Characteristics of Protein-DNA Binding Phenomena in a Nanoscale Confined Space

机译:基于纳米孔的DNA-探针序列进化方法揭示了纳米级密闭空间中蛋白质-DNA结合现象的特征

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Almost all of the important functions of DNA are realized by proteins which interact with specific DNA, which actually happens in a limited space. However, most of the studies about the protein-DNA binding are in an unconfined space. Here, we propose a new method, nanopore-based DNA-probe sequence-evolution (NDPSE), which includes up to 6 different DNA-probe systems successively designed in a nanoscale confined space which unveil the more realistic characteristics of protein-DNA binding phenomena. There are several features; for example, first, the edge-hindrance and core-hindrance contribute differently for the binding events, and second, there is an equilibrium between protein-DNA binding and DNA-DNA hybridization.
机译:DNA几乎所有重要功能都是通过与特定DNA相互作用的蛋白质实现的,而这种蛋白质实际上发生在有限的空间内。但是,大多数有关蛋白质与DNA结合的研究都处于无限制的空间。在这里,我们提出了一种新方法,即基于纳米孔的DNA探针序列进化(NDPSE),它包括在纳米级密闭空间中相继设计的多达6种不同的DNA探针系统,这些系统揭示了蛋白质与DNA结合现象的更现实特征。 。有几个功能;例如,首先,边缘结合和核心结合对结合事件的贡献不同,其次,蛋白质-DNA结合与DNA-DNA杂交之间存在平衡。

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