Hsieh Chih-Chen, Balducci Anthony, Doyle Patrick S
Department of Chemical Engineering, Massachusetts Institute of Technology, Cambridge, MA 02139, USA.
Nano Lett. 2008 Jun;8(6):1683-8. doi: 10.1021/nl080605+. Epub 2008 May 7.
The ionic effects on the dynamics and conformation of DNA in silt-like confinement are investigated. Confined lambda-DNA is considered as a model polyelectrolyte, and its longest relaxation time, diffusivity, and size are measured at a physiological ionic strength between 1.7-170 mM. DNA properties change drastically in response to the varying ionic environment, and these changes can be explained by blob theory with an electrostatically mediated effective diameter and persistence length. In the ionic range we investigate, the effective diameter of DNA that represents the electrostatic repulsion between remote segments is found to be the main driving force for the observed change in DNA properties. Our results are useful for understanding the manipulation of biomolecules in nanofluidic devices.
研究了离子对淤泥状受限环境中DNA动力学和构象的影响。受限的λ-DNA被视为一种模型聚电解质,在1.7 - 170 mM的生理离子强度下测量其最长弛豫时间、扩散率和尺寸。DNA的性质会随着离子环境的变化而急剧改变,这些变化可以用具有静电介导的有效直径和持久长度的“团块”理论来解释。在我们研究的离子范围内,代表远程片段之间静电排斥的DNA有效直径是观察到的DNA性质变化的主要驱动力。我们的结果有助于理解纳米流体装置中生物分子的操控。