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Mechanisms of chain folding in nucleic acids. The (omega omega) plot and its correlation to the nucleotide geometry in yeast tRNAPhe1.

机译:核酸链折叠的机制。 (ωω)图及其与酵母tRNAPhe1中核苷酸几何结构的关系。

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摘要

The (omega', omega) polot depicting the internucleotide P-O bond rotation angles in yeast phenylalanyl transfer RNA has established the interdependence of the phosphodiesters and the nucleotide geometries in the folding of the polynucleotide backbone. The plot distinguishes the regions characteristic of secondary helical structures and tertiary structural loops and bends. The folding of the polynucleotide chain is accomplished either solely by rotations around the P-O bonds or in concert with rotations around the nucleotide C4'-C5' bond with or without changes in the sugar ring pucker. In spite of differences in nucleotide sequence and intraloop tertiary interactions in the anticodon and pseudouridine loops, a characteristic repeating structural unit is found for the sugar-phosphate backbone of the tetranucleotide segment around the sharp turns.
机译:描绘酵母苯丙氨酰转移RNA中核苷酸间P-O键旋转角度的(omega',omega)图谱已确定了磷酸二酯和核苷酸几何结构在多核苷酸主链折叠中的相互依赖性。该图区分了二级螺旋结构,三级结构环和弯曲的特征区域。多核苷酸链的折叠仅通过围绕P-O键的旋转来完成,或者与绕核苷酸C4'-C5'键的旋转一起而完成,无论是否存在糖环折叠。尽管在反密码子和伪尿苷环中核苷酸序列和环内三级相互作用方面存在差异,但在急转弯附近发现了四核苷酸片段的糖磷酸骨架的特征重复结构单元。

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