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通过高阶荧光相关光谱学揭示三态 DNA 发夹构象动力学。

Three-State DNA Hairpin Conformational Dynamics Revealed by Higher-Order Fluorescence Correlation Spectroscopy.

出版信息

J Phys Chem B. 2019 Feb 21;123(7):1491-1504. doi: 10.1021/acs.jpcb.8b10703. Epub 2019 Feb 13.

Abstract

Previous fluorescence correlation spectroscopy (FCS) measurements of DNA hairpin folding dynamics revealed at least three conformational states of the DNA are present, distinguished by the brightness of fluorescent dye-quencher labels. Rapid fluctuations between two of the states occurred on time scales observable by FCS. A third state that was static on the FCS time scale was also observed. In this study, we investigate these conformational states using newly developed higher-order FCS techniques. It is shown that conventional FCS alone cannot uniquely distinguish the conformational states or assign their roles in the observed mechanism. The additional information offered by higher-order FCS makes it possible (i) to uniquely identify the static and rapidly fluctuating states and (ii) to directly measure the brightnesses and populations of all three observed states. The rapid fluctuations occurring on the FCS time scale are due to a reversible reaction between the two lowest brightness levels, attributed to the folded and random-coil conformations of the DNA. Evidence is presented that the third state, which is the brightest, may be associated with spatially extended unfolded conformations that are isolated from the more compact conformations by a substantial barrier. These conformations attain a maximum equilibrium population of nearly 10% near physiological temperatures and salt concentrations.

摘要

先前的荧光相关光谱(FCS)测量表明,DNA 发夹折叠动力学存在至少三种构象状态,通过荧光染料猝灭剂标记的亮度来区分。在 FCS 可观测的时间尺度内,两种状态之间发生快速波动。还观察到第三种在 FCS 时间尺度上处于静态的状态。在这项研究中,我们使用新开发的高阶 FCS 技术研究这些构象状态。结果表明,仅常规 FCS 无法唯一区分构象状态或分配它们在观察到的机制中的作用。高阶 FCS 提供的额外信息使得(i)能够唯一识别静态和快速波动状态,以及(ii)能够直接测量所有三种观察到的状态的亮度和群体。在 FCS 时间尺度上发生的快速波动是由于两种最低亮度水平之间的可逆反应引起的,归因于 DNA 的折叠和无规卷曲构象。有证据表明,最亮的第三种状态可能与空间扩展的未折叠构象有关,这些构象通过一个实质性的障碍与更紧凑的构象隔离开来。这些构象在接近生理温度和盐浓度时达到近 10%的最大平衡群体。

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