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异手性DNA发夹的核磁共振研究:环中L-对映体的影响

NMR study of a heterochiral DNA hairpin:impact of L-enantiomery in the loop.

作者信息

El Amri C, Mauffret O, Santamariar F, Tevanian G, Rayner S, Fermandjian S

机构信息

Department de Biologie et Pharmacologie Structurales, UMR 8532, CNRS, PR2, Institut Gustave-Roussy, 39, rue Camille-Desmoulins, 94805 Villejuif Cedex, France.

出版信息

J Biomol Struct Dyn. 2001 Dec;19(3):459-70. doi: 10.1080/07391102.2001.10506754.

Abstract

We carried out a structural study of the DNA heterochiral strand d (AGCTTATCAT(L)CGATAAGCT), -AT(L)C-, where T(L) (L thymine ) replaces T (natural D-thymine). -AT(L)C- is a structural analog of -ATC- that belongs to a strong topoisomerase II DNA cleavage site and which has been shown to resolve into a hairpin structure with a stem formed by eight Waston-Crick base-pairs and a single residue loop closed by an A.C sheared base-pair. Although - AT(L)C-, like its parent -ATC-, folds into a hairpin structure at low and high DNA concentrations it displays a lower stability (Tm of 56 degrees C versus 58.5 degrees C). Several NMR features in -AT(L)C- account for the disruption of the A.C pairing in the loop and a weakening of the C.G base-pair stability at the stem-loop junction. For instance, the exchange of the loop imino protons with solvent is accelerated compared with the natural oligonucleotide -ATC-. The higher flexibility of the heterochiral loop is confirmed by the results of NMR restrained molecular dynamics. In the calculated final structures of -AT(L)C-, the T10(L) residue moves the A9 and C11 residues away, thus preventing the loop closure through a C.A sheared base-pair and the achievement of a good base-base or sugar-base stacking. Actually, most of the stabilizing interactions present in -ATC- are lost in the heterochiral - AT(L)C- explaining its weaker stability.

摘要

我们对DNA异手性链d(AGCTTATCAT(L)CGATAAGCT),-AT(L)C-进行了结构研究,其中T(L)(L型胸腺嘧啶)取代了T(天然D型胸腺嘧啶)。-AT(L)C-是-ATC-的结构类似物,-ATC-属于强拓扑异构酶II DNA切割位点,并且已被证明可解析为发夹结构,其茎由八个沃森-克里克碱基对形成,单个残基环由一个A·C剪切碱基对封闭。尽管-AT(L)C-与其母体-ATC-一样,在低和高DNA浓度下都折叠成发夹结构,但它显示出较低的稳定性(熔点为56℃,而-ATC-为58.5℃)。-AT(L)C-中的几个核磁共振特征解释了环中A·C配对的破坏以及茎环连接处C·G碱基对稳定性的减弱。例如,与天然寡核苷酸-ATC-相比,环亚氨基质子与溶剂的交换加速。核磁共振受限分子动力学的结果证实了异手性环具有更高的灵活性。在计算得到的-AT(L)C-最终结构中,T10(L)残基将A9和C11残基移开,从而阻止了通过C·A剪切碱基对形成环封闭以及实现良好的碱基-碱基或糖-碱基堆积。实际上,-ATC-中存在的大多数稳定相互作用在异手性的-AT(L)C-中丧失,这解释了其较弱的稳定性。

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