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A localized transition in the size variation of circular DNA in nanofluidic slitlike confinement

机译:纳米流体狭缝状封闭中环状DNA大小变化的局部转变

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We report strong evidence for a localized transition in the size variation of circular DNA between strong and moderate regimes of slitlike confinement. A novel and rigorous statistical analysis was applied to our recent experimental measurements of DNA size for linear and circular topologies in nanofluidic slits with depths around ≈ 2p, where p is the persistence length. This empirical approach revealed a localized transition between confinement regimes for circular DNA at a slit depth of ≈ 3p but neither detected nor ruled out the possibility for such a transition for linear DNA. These unexpected results provide the first indication of the localized influence of polymer topology on size variation in slitlike confinement. Improved understanding of differences in polymer behavior related to topology in this controversial and relevant system is of fundamental importance in polymer science and will inform nanofluidic methods for biopolymer analysis.
机译:我们报告有力的证据表明强和中等狭缝状限制制度之间的环状DNA大小变化的局部过渡。我们最近对纳米流体狭缝中线性和圆形拓扑结构的DNA大小进行了新颖而严格的统计分析,深度约为≈2p,其中p为持久性长度。这种经验方法揭示了在狭缝深度约为3p时,环状DNA的限制机制之间存在局部过渡,但没有发现或排除线性DNA发生这种过渡的可能性。这些出乎意料的结果首次表明了聚合物拓扑结构对狭缝状限制条件下尺寸变化的局部影响。在这个有争议的相关系统中,对与拓扑相关的聚合物行为差异的更好的了解在聚合物科学中具有根本的重要性,并将为生物聚合物分析的纳米流体方法提供参考。

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