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Distribution of distances between DNA barcode labels in nanochannels close to the persistence length

机译:接近持久性长度的纳米通道中DNA条形码标签之间的距离分布

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摘要

We obtained experimental extension data for barcoded E. coli genomic DNA molecules confined in nanochannels from 40 nm to 51 nm in width. The resulting data set consists of 1 627 779 measurements of the distance between fluorescent probes on 25 407 individual molecules. The probability density for the extension between labels is negatively skewed, and the magnitude of the skewness is relatively insensitive to the distance between labels. The two Odijk theories for DNA confinement bracket the mean extension and its variance, consistent with the scaling arguments underlying the theories. We also find that a harmonic approximation to the free energy, obtained directly from the probability density for the distance between barcode labels, leads to substantial quantitative error in the variance of the extension data. These results suggest that a theory for DNA confinement in such channels must account for the anharmonic nature of the free energy as a function of chain extension.
机译:我们获得了限制在40纳米至51纳米宽度的纳米通道中的条形码化大肠杆菌基因组DNA分子的实验扩展数据。结果数据集由25个407个单个分子上的荧光探针之间的距离的1个627到779个测量值组成。标签之间延伸的概率密度为负偏斜,并且偏斜的大小对标签之间的距离相对不敏感。关于DNA限制的两种Odijk理论将均值扩展及其方差括起来,与该理论背后的定标论证一致。我们还发现,直接从条形码标签之间距离的概率密度直接获得的自由能的谐波近似会导致扩展数据方差中的大量定量误差。这些结果表明,将DNA限制在这种通道中的理论必须考虑自由能的非谐性质,作为链增长的函数。

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