Suppr超能文献

溶液中杂交聚(rA)·聚(dT)的二级结构。涉及500兆赫的核Overhauser效应(NOE)研究以及在NOE数据限制下的立体化学建模。

Secondary structure of the hybrid poly(rA).poly(dT) in solution. Studies involving NOE at 500 MHz and stereochemical modelling within the constraints of NOE data.

作者信息

Gupta G, Sarma M H, Sarma R H

出版信息

J Mol Biol. 1985 Nov 20;186(2):463-9. doi: 10.1016/0022-2836(85)90118-4.

Abstract

One-dimensional nuclear Overhauser effect (NOE) in nuclear magnetic resonance spectroscopy along with stereochemically sound model building was employed to derive the structure of the hybrid poly(rA).poly(dT) in solution. Extremely strong NOE was observed at AH2' when AH8 was presaturated; strong NOEs were observed at TH2'TH2'' when TH6 was presaturated; in addition the observed NOEs at TH2' and TH2'' were nearly equal when TH6 was presaturated. There was no NOE transfer to AH3' from AH8 ruling out the possibility of (C-3'-endo, low anti chi approximately equal to 200 degrees to 220 degrees) conformation for the A residues. The observed NOE data suggest that the nucleotidyl units in both rA and dT strands have equivalent conformations: C-2'-endo/C-1'-exo, anti chi approximately equal to 240 degrees to 260 degrees. Such a nucleotide geometry for rA/dT is consistent with a right-handed B-DNA model for poly(rA).poly(dT) in solution in which the rA and dT strands are conformationally equivalent. Molecular models were generated for poly(rA).poly(dT) in the B-form based upon the geometrical constraints as obtained from the NOE data. Incorporation of (C-2'-endo pucker, chi congruent to 240 degrees to 260 degrees) into the classical B-form resulted in severe close contacts in the rA chain. By introducing base-displacement, tilt and twist along with concomitant changes in the backbone torsion angles, we were able to generate a B-form for the hybrid poly(rA).poly(dT) fully consistent with the observed NOE data. In the derived model the sugar pucker is C-1'-exo, a minor variant of C-2'-endo and the sugar base torsion is 243 degrees, the remaining torsion angles being: epsilon = 198 degrees, xi = 260 degrees, alpha = 286 degrees, beta = 161 degrees and gamma = 72 degrees; this structure is free of any steric compression and indicates that it is not necessary to switch to C-3'-endo pucker for rA residues in order to accommodate the 2'-OH group. The structure that we have proposed for the polynucleotide RNA-DNA hybrid in solution is in complete agreement with that proposed for a hexamer hybrid in solution from NOE data and is inconsistent with the heteronomous model proposed for the fibrous state.

摘要

在核磁共振光谱中利用一维核Overhauser效应(NOE)并结合合理的立体化学模型构建,推导溶液中杂交聚(rA)·聚(dT)的结构。当AH8预饱和时,在AH2'处观察到极强的NOE;当TH6预饱和时,在TH2'和TH2''处观察到强NOE;此外,当TH6预饱和时,在TH2'和TH2''处观察到的NOE几乎相等。从AH8到AH3'没有NOE转移,排除了A残基具有(C-3'-内式,低反式χ约等于200°至220°)构象的可能性。观察到的NOE数据表明,rA链和dT链中的核苷酸单元具有等效构象:C-2'-内式/C-1'-外式,反式χ约等于240°至260°。rA/dT的这种核苷酸几何结构与溶液中聚(rA)·聚(dT)的右手B-DNA模型一致,其中rA链和dT链在构象上是等效的。基于从NOE数据获得的几何约束,生成了B型聚(rA)·聚(dT)的分子模型。将(C-2'-内式褶皱,χ等于240°至260°)纳入经典B型会导致rA链中出现严重的紧密接触。通过引入碱基位移、倾斜和扭转以及主链扭转角的相应变化,我们能够生成与观察到的NOE数据完全一致的杂交聚(rA)·聚(dT)的B型。在推导的模型中,糖的褶皱是C-1'-外式,是C-2'-内式的一个小变体,糖基扭转角为243°,其余扭转角为:ε = 198°,ξ = 260°,α = 286°,β = 161°,γ = 72°;这种结构没有任何空间压缩,表明没有必要为了容纳2'-OH基团而将rA残基转换为C-3'-内式褶皱。我们为溶液中的多核苷酸RNA-DNA杂交体提出的结构与根据NOE数据为溶液中的六聚体杂交体提出的结构完全一致,并且与为纤维状态提出的异源模型不一致。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验