Macaya R, Wang E, Schultze P, Sklenár V, Feigon J
Department of Chemistry and Biochemistry, University of California, Los Angeles 90024.
J Mol Biol. 1992 Jun 5;225(3):755-73. doi: 10.1016/0022-2836(92)90399-5.
Two-dimensional 1H n.m.r. spectroscopy has been used to study the 31-base DNA oligonucleotide 5'-dAGAGAGAACCCCTTCTCTCTTTTTCTCTCTT-3', which folds to form a stable intramolecular triplex in solution at acidic pH. This structure is considerably more difficult to assign than short B-DNA duplexes and requires new assignment methods. The assignment strategy and assignments of almost all of the exchangeable and nonexchangeable resonances are presented. Seven base triplets and one Watson-Crick base-pair form the core of the structure and are connected by a four C and four T loop at either end. The second pyrimidine "strand" (bases 24 to 31) in this intramolecular pyrimidine-purine-pyrimidine triplex binds via Hoogsteen base-pairs in the major groove and is parallel to the purine "strand" (bases 1 to 8). Analysis of the sugar puckers reveals that, contrary to widely accepted belief, the triplex sugars are not predominantly in the N-type (close to C3'-endo) conformation. Except for some of the C nucleotides, all sugars are predominantly S-type (close to C2'-endo). Thus, the duplex DNA does not assume N-type sugar conformations to accommodate a third strand in the major groove. A preliminary model of the triplex structure is presented.
二维¹H核磁共振光谱已被用于研究31个碱基的DNA寡核苷酸5'-dAGAGAGAACCCCTTCTCTCTTTTTCTCTCTT-3',该寡核苷酸在酸性pH条件下于溶液中折叠形成稳定的分子内三链体。这种结构比短的B-DNA双链体更难进行归属,需要新的归属方法。本文介绍了几乎所有可交换和不可交换共振峰的归属策略及归属结果。七个碱基三联体和一个沃森-克里克碱基对构成了该结构的核心,并通过两端的四个C和四个T环相连。在这个分子内嘧啶-嘌呤-嘧啶三链体中,第二条嘧啶“链”(碱基24至31)通过大沟中的 hoogsteen 碱基对结合,且与嘌呤“链”(碱基1至8)平行。对糖环构象的分析表明,与广泛接受的观点相反,三链体中的糖并非主要处于N型(接近C3'-内型)构象。除了一些C核苷酸外,所有糖主要为S型(接近C2'-内型)。因此,双链DNA不会采用N型糖构象来在大沟中容纳第三条链。本文还给出了三链体结构的初步模型。