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DNA双链中无碱基位点的核磁共振研究:脱氧腺苷堆积到与无环损伤相对的螺旋中。

NMR studies of abasic sites in DNA duplexes: deoxyadenosine stacks into the helix opposite acyclic lesions.

作者信息

Kalnik M W, Chang C N, Johnson F, Grollman A P, Patel D J

机构信息

Department of Biochemistry and Molecular Biophysics, College of Physicians and Surgeons, Columbia University, New York, New York 10032.

出版信息

Biochemistry. 1989 Apr 18;28(8):3373-83. doi: 10.1021/bi00434a037.

Abstract

Proton and phosphorus NMR studies are reported for two complementary nonanucleotide duplexes containing acyclic abasic sites. The first duplex, d(C-A-T-G-A-G-T-A-C).d(G-T-A-C-P-C-A-T-G), contains an acyclic propanyl moiety, P, located opposite a deoxyadenosine at the center of the helix (designated APP 9-mer duplex). The second duplex, d(C-A-T-G-A-G-T-A-C).d(G-T-A-C-E-C-A-T-G), contains a similarly located acyclic ethanyl moiety, E (designated APE 9-mer duplex). The ethanyl moiety is one carbon shorter than the natural carbon-phosphodiester backbone of a single nucleotide unit of DNA. The majority of the exchangeable and nonexchangeable base and sugar protons in both the APP 9-mer and APE 9-mer duplexes, including those at the abasic site, have been assigned by recording and analyzing two-dimensional phase-sensitive NOESY data sets in H2O and D2O solution between -5 and 5 degrees C. These spectroscopic observations establish that A5 inserts into the helix opposite the abasic site (P14 and E14) and stacks between the flanking G4.C15 and G6.C13 Watson-Crick base pairs in both the APP 9-mer and APE 9-mer duplexes. The helix is right-handed at and adjacent to the abasic site, and all glycosidic torsion angles are anti in both 9-mer duplexes. Proton NMR parameters for the APP 9-mer and APE 9-mer duplexes are similar to those reported previously for the APF 9-mer duplex (F = furan) in which a cyclic analogue of deoxyribose was embedded in an otherwise identical DNA sequence [Kalnik, M. W., Chang, C. N., Grollman, A. P., & Patel, D. J. (1988) Biochemistry 27, 924-931]. These proton NMR experiments demonstrate that the structures at abasic sites are very similar whether the five-membered ring is open or closed or whether the phosphodiester backbone is shortened by one carbon atom. Phosphorus spectra of the APP 9-mer and APE 9-mer duplexes (5 degrees C) indicate that the backbone conformation is similarly perturbed at three phosphodiester backbone torsion angles. These same torsion angles are also distorted in the APF 9-mer but assume a different conformation than those in the APP 9-mer and APE 9-mer duplexes.

摘要

本文报道了对两种含有无环无碱基位点的互补九核苷酸双链体的质子和磷核磁共振研究。第一种双链体,d(C-A-T-G-A-G-T-A-C).d(G-T-A-C-P-C-A-T-G),在螺旋中心与脱氧腺苷相对的位置含有一个无环丙烷基团P(命名为APP 9-mer双链体)。第二种双链体,d(C-A-T-G-A-G-T-A-C).d(G-T-A-C-E-C-A-T-G),在相似位置含有一个无环乙烷基团E(命名为APE 9-mer双链体)。乙烷基团比DNA单个核苷酸单元的天然碳-磷酸二酯主链少一个碳原子。通过记录和分析在-5至5摄氏度的H2O和D2O溶液中的二维相敏NOESY数据集,对APP 9-mer和APE 9-mer双链体中大多数可交换和不可交换的碱基及糖质子进行了归属,包括无碱基位点处的质子。这些光谱观察结果表明,在APP 9-mer和APE 9-mer双链体中,A5插入到与无碱基位点(P14和E14)相对的螺旋中,并堆积在侧翼的G4.C15和G6.C13沃森-克里克碱基对之间。在无碱基位点及其相邻位置,螺旋为右手螺旋,并且在两种9-mer双链体中所有糖苷扭转角均为反式。APP 9-mer和APE 9-mer双链体的质子核磁共振参数与先前报道的APF 9-mer双链体(F = 呋喃糖)相似,在APF 9-mer双链体中,脱氧核糖的环状类似物嵌入在其他方面相同的DNA序列中[卡尔尼克,M. W.,张,C. N.,格罗尔曼,A. P.,& 帕特尔,D. J.(1988年)《生物化学》27,924 - 931]。这些质子核磁共振实验表明,无论五元环是开放还是封闭,或者磷酸二酯主链是否缩短一个碳原子,无碱基位点处的结构都非常相似。APP 9-mer和APE 9-mer双链体(5摄氏度)的磷谱表明,在三个磷酸二酯主链扭转角处,主链构象受到类似的扰动。在APF 9-mer中,相同的扭转角也发生了扭曲,但呈现出与APP 9-mer和APE 9-mer双链体不同的构象。

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