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Patchiness of ionexchanged mica revealed by DNA binding dynamics at short length scales

机译:通过短距离尺度上的DNA结合动力学揭示了离子交换云母的斑点

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The binding of double-stranded (ds) DNA to mica can be controlled through ion-exchanging the mica with divalent cations. Measurements of the end-to-end distance of linear DNA molecules discriminate whether the binding mechanism occurs through 2D surface equilibration or kinetic trapping. A range of linear dsDNA fragments have been used to investigate length dependences of binding. Mica, ion-exchanged with Ni(II) usually gives rise to kinetically trapped DNA molecules, however, short linear fragments (<800 bp) are seen to deviate from the expected behaviour. This indicates that ion-exchanged mica is heterogeneous, and contains patches or domains, separating different ionic species. These results correlate with imaging of dsDNA under aqueous buffer on Ni(II)-mica and indicate that binding domains are of the order of 100 nm in diameter. Shorter DNA fragments behave intermediate to the two extreme cases of 2D equilibration and kinetic trapping. Increasing the incubation time of Ni(II) on mica, from minutes to hours, brings the conformations of the shorter DNA fragments closer to the theoretical value for kinetic trapping, indicating that long timescale kinetics play a role in ion-exchange. X-ray photoelectron spectroscopy (XPS) was used to confirm that the relative abundance of Ni(II) ions on the mica surface increases with time. These findings can be used to enhance spatial control of binding of DNA to inorganic surfaces with a view to patterning high densities arrays.
机译:双链(ds)DNA与云母的结合可以通过将云母与二价阳离子进行离子交换来控制。线性DNA分子的端对端距离的测量可区分是通过2D表面平衡还是通过动力学捕获来发生结合机制。一系列线性dsDNA片段已用于研究结合的长度依赖性。与Ni(II)进行离子交换的云母通常会产生动力学捕获的DNA分子,但是,可以看到较短的线性片段(<800 bp)偏离了预期的行为。这表明离子交换的云母是异质的,并包含分隔不同离子种类的斑块或结构域。这些结果与在Ni(II)-云母上的水性缓冲液下对dsDNA的成像有关,并表明结合域的直径约为100 nm。较短的DNA片段的行为介于2D平衡和动力学诱捕这两种极端情况的中间。 Ni(II)在云母上的孵育时间从数分钟增加到数小时,使较短的DNA片段的构象更接近于动力学捕获的理论值,表明长时程动力学在离子交换中起作用。 X射线光电子能谱(XPS)用于确认云母表面Ni(II)离子的相对丰度随时间增加。这些发现可用于增强DNA与无机表面结合的空间控制,以构图高密度阵列。

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