首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Sequence-Dependent Solvation Dynamics of Minor-Groove Bound Ligand Inside Duplex-DNA
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Sequence-Dependent Solvation Dynamics of Minor-Groove Bound Ligand Inside Duplex-DNA

机译:双链DNA内部小沟结合配体的序列依赖性溶剂化动力学

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Ligand binding to minor-grooves of DNA depends on DNA-base sequence near its binding-site. However, it is not known how base-sequences affect the local solvation of ligand inside minor-grooves of DNA. Here we present a comprehensive study on sequence-dependent solvation dynamics of ligand inside duplex-DNA by measuring the static and dynamic fluorescence Stokes shifts of a popular groove-binder, DAPI, inside DNA minor-grooves created by four different sequences; d(5'-CGCG (AATTC) under bar GCG-3')(2), d(5'CGCG (TTAAC) under bar GCG-3')(2), d(5'-CGCGC (AATTG) under bar CGCG-3')(2,) and d(5'-CGCGC (AATTG) under bar CGCG-3')(2,) having different sequences near DAPI-binding.site. Fluorescence up-conversion and time-correlated single photon counting techniques are employed to capture the dynamic Stokes shifts of DAPI over five decades in time from 100 fs to 10 ns. We show that the ligands sense different static and dynamic solvation inside minor-grooves created by different sequences: Only subtle change in the dynamics is seen in DNA containing -AATTG-, -TTAAG-, and -AATTC- sequences, which show power-law relaxation in initial time-decades, followed by biexponential decay in nanosecond time-scales. However, changing a single base (and the complementary base) near ligand-binding site from -TTAA (G) under bar- to -TTAA (C) under bar- drastically induces the dynamics to follow a single power-law relaxation over the entire five decades. The observed variation of dynamics possibly relate to the local DNA motions, coupled to the hydration dynamics near the ligand-binding site.
机译:配体与次要DNA凹槽的结合取决于其结合位点附近的DNA碱基序列。然而,尚不清楚碱基序列如何影响DNA的小沟内配体的局部溶剂化。在这里,我们通过测量由四个不同序列产生的DNA小槽内部的流行沟纹粘合剂DAPI的静态和动态荧光斯托克斯位移,对双链体DNA内部配体的序列依赖性溶剂化动力学进行了全面研究。 d(5'-CGCG(AATTC)在GCG-3')(2)下,d(5'CGCG(TTAAC)在GCG-3')(2)下,d(5'-CGCGC(AATTG)在bar下CGCG-3')(2,)下方的CGCG-3')(2,)和d(5'-CGCGC(AATTG))在DAPI-binding.site附近具有不同的序列。采用荧光上转换和与时间相关的单光子计数技术来捕获DAPI在从100 fs到10 ns的五十年时间内的动态Stokes位移。我们显示,配体在由不同序列产生的微小凹槽内感觉到不同的静态和动态溶剂化:在包含-AATTG-,-TTAAG-和-AATTC-序列的DNA中仅观察到动力学的细微变化,这显示了幂律。在最初的十年中放松,然后在纳秒级的时标中出现双指数衰减。但是,将配体结合位点附近的单个碱基(和互补碱基)从bar-下的-TTAA(G)变为bar-下的-TTAA(C),会导致动力学在整个过程中遵循单一幂律松弛五十年。观察到的动力学变化可能与局部DNA运动有关,并与配体结合位点附近的水合动力学有关。

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