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限制在纳米狭缝中的单个DNA分子的静态构象和动力学

Static conformation and dynamics of single DNA molecules confined in nanoslits.

作者信息

Lin Po-Keng, Fu Chi-Cheng, Chen Y-L, Chen Yan-Ru, Wei Pei-Kuen, Kuan C H, Fann W S

机构信息

Department of Physics, National Taiwan University, Taipei 10617, Taiwan, Republic of China.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2007 Jul;76(1 Pt 1):011806. doi: 10.1103/PhysRevE.76.011806. Epub 2007 Jul 23.

DOI:10.1103/PhysRevE.76.011806
PMID:17677483
Abstract

Nearly thirty years ago, Daoud and de Gennes derived the scaling predictions for the linear polymer chains trapped in a slit with dimension close to the Kuhn length; however, these predictions have yet to be compared with experiments. We have fabricated nanoslits with vertical dimension similar to the Kuhn length of ds-DNA (110nm) using standard photolithography techniques. Fluorescently labeled single DNA molecules with contour lengths L ranging from 4 to 75 microm were successfully injected into the slits and the chain molecules undergoing Brownian motions were imaged by fluorescence microscopy. The distributions of the chain radius of gyration and the two-dimensional asphericity were measured. It is found that the DNA molecules exhibit highly anisotropic shape and the mean asphericity is chain length independence. The shape anisotropy of DNA in our measurements is between two and three dimensions (2D and 3D). The static scaling law of the chain extension and the radius of gyration , approximately L(nu) were observed with nuR(parallel)=0.65+/-0.02 and nu(Rg)=0.68+/-0.05. These results are close to the average value between two (nuR parallel,Rg=0.75) and three (nuR parallel,Rg=0.6) -dimensional theoretical value. The scaling of the extensional and rotational relaxation time are between Rouse model in nanoslits and Zimm model in the bulk solution, respectively. We show that the conformation and chain relaxation of DNA confined in a slit close to Kuhn length exhibit the quasi-two-dimensional behavior.

摘要

近三十年前,达乌德和德热纳推导出了被困在尺寸接近库恩长度的狭缝中的线性聚合物链的标度预测;然而,这些预测尚未与实验进行比较。我们使用标准光刻技术制造了垂直尺寸类似于双链DNA库恩长度(110纳米)的纳米狭缝。成功地将轮廓长度L在4至75微米范围内的荧光标记单链DNA分子注入狭缝中,并通过荧光显微镜对进行布朗运动的链分子进行成像。测量了链回转半径和二维非球形度的分布。发现DNA分子呈现出高度各向异性的形状,且平均非球形度与链长无关。我们测量中DNA的形状各向异性介于二维和三维之间。观察到链伸展和回转半径<R∥>、的静态标度律为<R∥>、≈L(ν),其中νR(∥)=0.65±0.02,ν(Rg)=0.68±0.05。这些结果接近二维(νR∥,Rg=0.75)和三维(νR∥,Rg=0.6)理论值之间的平均值。伸展和旋转弛豫时间的标度分别介于纳米狭缝中的劳厄模型和本体溶液中的齐姆模型之间。我们表明,限制在接近库恩长度的狭缝中的DNA的构象和链弛豫表现出准二维行为。

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