Wang E, Malek S, Feigon J
Department of Chemistry and Biochemistry, University of California, Los Angeles 90024.
Biochemistry. 1992 May 26;31(20):4838-46. doi: 10.1021/bi00135a015.
A 32-base DNA oligonucleotide has been studied by one- and two-dimensional 1H NMR spectroscopy and is shown to form a stable, pyr.pur.pyr, intramolecular triple helical structure, with a four C loop and a TATA loop connecting the Watson-Crick- and Hoogsteen-paired strands, respectively. This triplex contains five T.A.T base triplets, two C+.G.C base triplets, and an unusual G.T.A base triplet which disrupts the pyr.pur.pyr motif. The G.T.A triplet consists of a Watson-Crick T.A base pair, with the T situated in the "purine strand" and the A situated in the "pyrimidine strand" and a G situated in the Hoogsteen-base-paired "pyrimidine strand" hydrogen bonded to the T. The base-pairing structure of the G.T.A triplet has been investigated and has been found to involve a single hydrogen bond from the guanine amino group to the O4 carbonyl of the thymine, leaving the guanine imino proton free. The specific amino proton involved in the hydrogen bond is the H2(2) proton. This orients the guanine such that its sugar is near the thymine methyl group. The guanine sugar adopts an N-type (C3'-endo) sugar pucker in this triplet. The stability of the G.T.A triplet within pyr.pur.pyr triplexes is discussed.
通过一维和二维氢核磁共振光谱对一段32个碱基的DNA寡核苷酸进行了研究,结果表明其形成了一种稳定的、嘧啶-嘌呤-嘧啶型分子内三螺旋结构,其中有一个含四个胞嘧啶的环和一个TATA环,分别连接着遵循沃森-克里克碱基配对和霍格施泰因碱基配对的链。该三链体包含五个T.A.T碱基三联体、两个C⁺.G.C碱基三联体以及一个破坏嘧啶-嘌呤-嘧啶基序的异常G.T.A碱基三联体。G.T.A三联体由一个沃森-克里克T.A碱基对组成,其中T位于“嘌呤链”,A位于“嘧啶链”,G位于与T形成氢键的霍格施泰因碱基配对的“嘧啶链”。对G.T.A三联体的碱基配对结构进行了研究,发现其涉及从鸟嘌呤氨基到胸腺嘧啶O4羰基的单个氢键,使鸟嘌呤亚氨基质子游离。参与氢键的特定氨基质子是H2(2)质子。这使鸟嘌呤定向,使其糖靠近胸腺嘧啶甲基。在该三联体中,鸟嘌呤糖采取N型(C3'-内型)糖构象。讨论了G.T.A三联体在嘧啶-嘌呤-嘧啶三链体中的稳定性。