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Effects of electrostatic screening on the conformation of single DNA molecules confined in a nanochannel

机译:静电筛选对纳米通道中单个DNA分子构象的影响

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Single T4-DNA molecules were confined in rectangular-shaped channels with a depth of 300 nm and a width in the range of 150-300 nm casted in a poly(dimethylsiloxane) nanofluidic chip. The extensions of the DNA molecules were measured with fluorescence microscopy as a function of the ionic strength and composition of the buffer as well as the DNA intercalation level by the YOYO-1 dye. The data were interpreted with the scaling theory for a wormlike polymer in good solvent, including the effects of confinement, charge, and self-avoidance. It was found that the elongation of the DNA molecules with decreasing ionic strength can be interpreted in terms of an increase of the persistence length. Self-avoidance effects on the extension are moderate, due to the small correlation length imposed by the channel cross-sectional diameter. Intercalation of the dye results in an increase of the DNA contour length and a partial neutralization of the DNA charge, but besides effects of electrostatic origin it has no significant effect on the bare bending rigidity. In the presence of divalent cations, the DNA molecules were observed to contract, but they do not collapse into a condensed structure. It is proposed that this contraction results from a divalent counterion mediated attractive force between the segments of the DNA molecule. (C) 2008 American Institute of Physics.
机译:将单个T4-DNA分子限制在浇铸在聚(二甲基硅氧烷)纳米流体芯片中的矩形通道中,该通道具有300 nm的深度和150-300 nm的宽度。 DNA分子的延伸通过荧光显微镜测量,作为离子强度和缓冲液组成以及YOYO-1染料的DNA嵌入水平的函数。数据是使用蠕虫状聚合物在良好溶剂中的定标理论解释的,包括限制,电荷和自我规避的影响。已经发现,具有降低的离子强度的DNA分子的延长可以用持续时间的增加来解释。由于通道横截面直径的相关长度较小,自我避免效应对延伸的影响适中。染料的插入导致DNA轮廓长度的增加和DNA电荷的部分中和,但是除了静电的影响外,它对裸露的弯曲刚度没有显着影响。在存在二价阳离子的情况下,观察到DNA分子会收缩,但不会塌缩成浓缩结构。提出该收缩是由于二价抗衡离子介导的DNA分子片段之间的吸引力引起的。 (C)2008美国物理研究所。

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