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富含 CG 的 DNA 18 聚体的结构变异性可容纳两个 T-T 错配。

Structural variability of CG-rich DNA 18-mers accommodating double T-T mismatches.

机构信息

Faculty of Nuclear Sciences and Physical Engineering, Czech Technical University in Prague, Brehova 7, 11519 Prague 1, Czech Republic.

Institute of Biotechnology of the Czech Academy of Sciences, BIOCEV, Prumyslova 595, 252 50 Vestec, Czech Republic.

出版信息

Acta Crystallogr D Struct Biol. 2020 Dec 1;76(Pt 12):1233-1243. doi: 10.1107/S2059798320014151. Epub 2020 Nov 24.

Abstract

Solution and crystal data are reported for DNA 18-mers with sequences related to those of bacterial noncoding single-stranded DNA segments called repetitive extragenic palindromes (REPs). Solution CD and melting data showed that the CG-rich, near-palindromic REPs from various bacterial species exhibit dynamic temperature-dependent and concentration-dependent equilibria, including architectures compatible with not only hairpins, which are expected to be biologically relevant, but also antiparallel duplexes and bimolecular tetraplexes. Three 18-mer oligonucleotides named Hpar-18 (PDB entry 6rou), Chom-18 (PDB entry 6ros) and its brominated variant Chom-18Br (PDB entry 6ror) crystallized as isomorphic right-handed A-like duplexes. The low-resolution crystal structures were solved with the help of experimental phases for Chom-18Br. The center of the duplexes is formed by two successive T-T noncanonical base pairs (mismatches). They do not deform the double-helical geometry. The presence of T-T mismatches prompted an analysis of the geometries of these and other noncanonical pairs in other DNA crystals in terms of their fit to the experimental electron densities (RSCC) and their geometric fit to the NtC (dinucleotide conformational) classes (https://dnatco.datmos.org/). Throughout this work, knowledge of the NtC classes was used to refine and validate the crystal structures, and to analyze the mismatches.

摘要

报道了与细菌非编码单链 DNA 片段(称为重复外回文)相关的序列的 18 个碱基对 DNA 的溶液和晶体数据。溶液 CD 和熔解数据表明,来自各种细菌物种的富含 CG 的近回文重复外回文表现出动态的、依赖于温度和浓度的平衡,包括与发夹结构(预计具有生物学相关性)以及反平行双链体和双分子四聚体兼容的结构。三个名为 Hpar-18(PDB 条目 6rou)、Chom-18(PDB 条目 6ros)及其溴代变体 Chom-18Br(PDB 条目 6ror)的 18 个碱基对寡核苷酸以同构的右手 A 型双链体形式结晶。在 Chom-18Br 的实验相的帮助下解决了低分辨率晶体结构。双链体的中心由两个连续的 T-T 非规范碱基对(错配)形成。它们不会使双螺旋几何变形。T-T 错配的存在促使我们根据实验电子密度(RSCC)及其与 NtC(二核苷酸构象)类别的几何拟合(https://dnatco.datmos.org/),对其他 DNA 晶体中这些和其他非规范碱基对的几何形状进行分析。在整个这项工作中,利用 NtC 类别的知识来精修和验证晶体结构,并分析错配。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4d86/7709200/41213a4f4622/d-76-01233-fig1.jpg

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