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包含 II 型四环和嘌呤小沟残基的 DNA 哑铃型的高分辨率结构。

High-Resolution Structures of DNA Minidumbbells Comprising Type II Tetraloops with a Purine Minor Groove Residue.

机构信息

Department of Chemistry, The Chinese University of Hong Kong, Shatin, New Territories, Hong Kong SAR, China.

School of Biology and Biological Engineering, South China University of Technology, Guangzhou, Guangdong 510006, China.

出版信息

J Phys Chem B. 2020 Jun 25;124(25):5131-5138. doi: 10.1021/acs.jpcb.0c03163. Epub 2020 Jun 15.

Abstract

Minidumbbell (MDB) is a newly discovered DNA structure formed by native sequences, which serves as a possible structural intermediate causing repeat expansion mutations in the genome and also a functional structural motif in constructing DNA-based molecular switches. Until now, all the reported MDBs containing two adjacent type II tetraloops were formed by pyrimidine-rich sequences 5'-YYYR YYYR-3' (Y and R represent pyrimidine and purine, respectively), wherein the second and sixth residues folded into the minor groove and interacted with each other. In this study, we have conducted a high-resolution nuclear magnetic resonance (NMR) spectroscopic investigation on alternative MDB-forming sequences and discovered that an MDB could also be formed stably with a purine in the minor groove, which has never been observed in any previously reported DNA type II tetraloops. Our refined NMR solution structures of the two MDBs formed by 5'-CTTG CTG-3' and 5'-CTTG CTG-3' reveal that the sixth purine residue was driven into the minor groove base-base stacking with the second thymine residue and adenine stacked better than guanine. The results of our present research work expand the sequence criteria for the formation of MDBs and shed light to explore the significance of MDBs.

摘要

哑铃状 DNA 结构(MDB)是一种新发现的由天然序列形成的 DNA 结构,它可能是导致基因组中重复扩展突变的结构中间物,也是构建基于 DNA 的分子开关的功能结构基序。到目前为止,所有报道的含有两个相邻的 II 型四链体的 MDB 都是由富含嘧啶的序列 5'-YYYR YYYR-3'(Y 和 R 分别代表嘧啶和嘌呤)形成的,其中第二个和第六个残基折叠到小沟中并相互作用。在这项研究中,我们对替代 MDB 形成序列进行了高分辨率核磁共振(NMR)光谱研究,发现嘌呤也可以稳定地形成 MDB,这在以前报道的任何 DNA II 型四链体中都从未观察到过。我们对由 5'-CTTG CTG-3'和 5'-CTTG CTG-3'形成的两个 MDB 的精细 NMR 溶液结构的研究表明,第六个嘌呤残基被驱动到小沟中,与第二个胸腺嘧啶残基碱基-碱基堆叠,并且腺嘌呤的堆叠效果优于鸟嘌呤。本研究工作的结果扩展了 MDB 形成的序列标准,并为探索 MDB 的意义提供了线索。

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