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通过介观建模和 NMR 确定截断的抗 MUC1 DNA 适体的溶液结构。

Solution structure of a truncated anti-MUC1 DNA aptamer determined by mesoscale modeling and NMR.

机构信息

Laboratoire Acides Nucléiques et Biophotonique, Université Pierre et Marie Curie Paris 6, Paris, France.

出版信息

FEBS J. 2012 Feb;279(3):479-90. doi: 10.1111/j.1742-4658.2011.08440.x. Epub 2012 Jan 3.

DOI:10.1111/j.1742-4658.2011.08440.x
PMID:22129448
Abstract

Mucin 1 is a well-established target for the early diagnosis of epithelial cancers. The nucleotides of the S1.3/S2.2 DNA aptamer involved in binding to variable number tandem repeat mucin 1 peptides have been identified using footprinting experiments. The majority of these binding nucleotides are located in the 25-nucleotide variable region of the total aptamer. Imino proton and 2D NMR spectra of truncated and total aptamers in supercooled water reveal common hydrogen-bonding networks and point to a similar secondary structure for this 25-mer sequence alone or embedded within the total aptamer. NMR titration experiments confirm that the TTT triloop structure is the primary binding site and show that the initial structure of the truncated aptamers is conserved upon interaction with variable number tandem repeat peptides. The thermal dependence of the NMR chemical shift data shows that the base-paired nucleotides melt cooperatively at 47 ± 4°C. The structure of the 25-mer oligonucleotide was determined using a new combined mesoscale molecular modeling, molecular dynamics and NMR spectroscopy investigation. It contains three Watson-Crick pairs, three consecutive mispairs and four Watson-Crick pairs capped by a TTT triloop motif. The 3D model structures (PDB 2L5K) and biopolymer chain elasticity molecular models are consistent with both NMR and long unconstrained molecular dynamics (10 ns) in explicit water, respectively. Database Structural data are available in the Protein Data Bank and BioMagResBank databases under the accession numbers 2L5K and 17129, respectively.

摘要

黏蛋白 1 是上皮性癌症早期诊断的一个成熟靶标。通过足迹实验鉴定了与可变数串联重复黏蛋白 1 肽结合的 S1.3/S2.2 DNA 适体的核苷酸。这些结合核苷酸的大部分位于全长适体的 25 个核苷酸可变区。超冷水中非变性和全长适体的亚胺质子和 2D NMR 谱揭示了常见的氢键网络,并指出该 25 个碱基序列本身或嵌入全长适体中具有相似的二级结构。NMR 滴定实验证实 TTT 三链环结构是主要结合位点,并表明短链适体与可变数串联重复肽相互作用时保持初始结构。NMR 化学位移数据的热依赖性表明,碱基配对核苷酸在 47±4°C 协同熔融。使用新的组合介观分子建模、分子动力学和 NMR 光谱学研究确定了 25 个碱基寡核苷酸的结构。它包含三个沃森-克里克对、三个连续错配和四个由 TTT 三链环基序封闭的沃森-克里克对。3D 模型结构(PDB 2L5K)和生物聚合物链弹性分子模型分别与 NMR 和在显式水中的长不受约束的分子动力学(10ns)一致。数据库结构数据可在蛋白质数据库和生物磁共振银行数据库中分别以 2L5K 和 17129 的条目号获得。

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