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环状哑铃状d<pCGC-TT-GCG-TT>的构象:结构测定与分子动力学

Conformation of the circular dumbbell d<pCGC-TT-GCG-TT>: structure determination and molecular dynamics.

作者信息

Ippel J H, Lanzotti V, Galeone A, Mayol L, van den Boogaart J E, Pikkemaat J A, Altona C

机构信息

Leiden Institute of Chemistry, Gorlaeus Laboratories, Leiden University, The Netherlands.

出版信息

J Biomol NMR. 1995 Dec;6(4):403-22. doi: 10.1007/BF00197639.

Abstract

The circular DNA decamer 5'-d-3' was studied in solution by means of NMR spectroscopy and molecular dynamics in H2O. At a temperature of 269 K, a 50/50 mixture of two dumbbell structures (denoted L2L2 and L2L4) is present. The L2L2 form contains three Watson-Crick C-G base pairs and two two-residue loops is opposite parts of the molecule. On raising the temperature from 269 K to 314 K, the L2L4 conformer becomes increasingly dominant (95% at 314 K). This conformer has a partially disrupted G(anti)-C(syn) closing base pair in the 5'-GTTC-3' loop with only one remaining (solvent-accessible) hydrogen bond between NH alpha of the cytosine dC(1) and O6 of the guanine dG(8). The opposite 5'-CTTG-3' loop remains stable. The two conformers occur in slow equilibrium (rate constant 2-20 s-1). Structure determination of the L2L2 and L2L4 forms was performed with the aid of a full relaxation matrix approach (IRMA) in combination with restrained MD. Torsional information was obtained from coupling constants. Coupling constant analysis (3JHH, 3JHP, 3JCP) gave detailed information about the local geometry around backbone torsion angles beta, gamma, delta, and epsilon, revealing a relatively high flexibility of the 5'-GTTC-3' loop. The values of the coupling constants are virtually temperature-independent. 'Weakly constrained' molecular dynamics in solvent was used to sample the conformational space of the dumbbell. The relaxation matrices from the MD simulation were averaged over to predict dynamic NOE volumes. In order to account for the 1:1 conformational mixture of L2L2 and L2L4 present at 271 K, we also included S2 factors and averaging of the -averaged relaxation matrices. On matrix averaging, the agreement of NOE volumes with experiment improved significantly for protons located in the thermodynamically less stable 5'-GTTC-3' loop. The difference in stability of the 5'-CTTG-3' and 5'-GTTC-3' loops is mainly caused by differences in the number of potential hydrogen bonds in the minor groove and differences in stacking overlap of the base pairs closing the minihairpin loops. The syn conformation for dC(1), favored at high temperature, is stabilized by solvation in the major groove. However, the conformational properties of the dC(1) base, as deduced from R-factor analysis and MD simulations, include a large flexibility about torsion angle chi.

摘要

通过核磁共振光谱法和在H2O中的分子动力学对环状DNA十聚体5'-d-3'在溶液中进行了研究。在269K的温度下,存在两种哑铃结构(分别表示为L2L2和L2L4)的50/50混合物。L2L2形式包含三个沃森-克里克C-G碱基对,并且在分子的相对部分有两个双残基环。将温度从269K升高到314K时,L2L4构象异构体变得越来越占主导(在314K时为95%)。这种构象异构体在5'-GTTC-3'环中有一个部分破坏的G(反式)-C(顺式)封闭碱基对,胞嘧啶dC(1)的NHα与鸟嘌呤dG(8)的O6之间仅剩下一个(溶剂可及的)氢键。相对的5'-CTTG-3'环保持稳定。这两种构象异构体处于缓慢平衡状态(速率常数为2 - 20 s-1)。借助全弛豫矩阵方法(IRMA)并结合受限分子动力学对L2L2和L2L4形式进行了结构测定。扭转信息从耦合常数中获得。耦合常数分析(3JHH、3JHP、3JCP)给出了有关主链扭转角β、γ、δ和ε周围局部几何结构的详细信息,揭示了5'-GTTC-3'环具有相对较高的灵活性。耦合常数的值实际上与温度无关。在溶剂中进行“弱约束”分子动力学以对哑铃的构象空间进行采样。对分子动力学模拟得到的弛豫矩阵进行平均以预测动态NOE体积。为了考虑在271K时存在的L2L2和L2L4的1:1构象混合物,我们还包括了S2因子以及对平均弛豫矩阵的平均。在矩阵平均后,对于位于热力学上较不稳定的5'-GTTC-3'环中的质子,NOE体积与实验的一致性有了显著改善。5'-CTTG-3'环和5'-GTTC-3'环稳定性的差异主要是由小沟中潜在氢键数量的差异以及封闭小发夹环的碱基对堆积重叠的差异引起的。dC(1)的顺式构象在高温下更受青睐,通过大沟中的溶剂化作用得以稳定。然而,从R因子分析和分子动力学模拟推断,dC(1)碱基的构象性质包括围绕扭转角χ的较大灵活性。

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