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d(C-G-C-G-A-A-T-T-C-O6meG-C-G)双链体中O6meG.C相互作用的结构研究。

Structural studies of the O6meG.C interaction in the d(C-G-C-G-A-A-T-T-C-O6meG-C-G) duplex.

作者信息

Patel D J, Shapiro L, Kozlowski S A, Gaffney B L, Jones R A

出版信息

Biochemistry. 1986 Mar 11;25(5):1027-36. doi: 10.1021/bi00353a012.

Abstract

One- and two-dimensional nuclear magnetic resonance (NMR) experiments have been undertaken to investigate the conformation of the d(C1-G2-C3-G4-A5-A6-T7-T8-C9-O6meG10-C11-G12) self-complementary dodecanucleotide (henceforth called O6meG.C 12-mer), which contains C3.O6meG10 interactions in the interior of the helix. We observe intact base pairs at G2.C11 and G4.C9 on either side of the modification site at low temperature though these base pairs are kinetically destabilized in the O6meG.C 12-mer duplex compared to the G.C 12-mer duplex. One-dimensional nuclear Overhauser effects (NOEs) on the exchangeable imino protons demonstrate that the C3 and O6meG10 bases are stacked into the helix and act as spacers between the flanking G2.C11 and G4.C9 base pairs. The nonexchangeable base and H1', H2', H2'', H3', and H4' protons have been completely assigned in the O6meG.C 12-mer duplex at 25 degrees C by two-dimensional correlated (COSY) and nuclear Overhauser effect (NOESY) experiments. The observed NOEs and their directionality demonstrate that the O6meG.C 12-mer is a right-handed helix in which the O6meG10 and C3 bases maintain their anti conformation about the glycosidic bond at the modification site. The NOEs between the H8 of O6meG10 and the sugar protons of O6meG10 and adjacent C9 exhibit an altered pattern indicative of a small conformational change from a regular duplex in the C9-O6meG10 step of the O6meG.C 12-mer duplex. We propose a pairing scheme for the C3.O6meG10 interaction at the modification site. Three phosphorus resonances are shifted to low field of the normal spectral dispersion in the O6meG.C 12-mer phosphorus spectrum at low temperature, indicative of an altered phosphodiester backbone at the modification site. These NMR results are compared with the corresponding parameters in the G.C 12-mer, which contains Watson-Crick base pairs at the same position in the helix.

摘要

已开展一维和二维核磁共振(NMR)实验,以研究d(C1-G2-C3-G4-A5-A6-T7-T8-C9-O6meG10-C11-G12)自互补十二聚体核苷酸(以下简称O6meG.C 12聚体)的构象,该十二聚体在螺旋内部含有C3.O6meG10相互作用。我们观察到,在低温下,修饰位点两侧的G2.C11和G4.C9处存在完整的碱基对,不过与G.C 12聚体双链体相比,这些碱基对在O6meG.C 12聚体双链体中动力学上不稳定。对可交换亚氨基质子的一维核Overhauser效应(NOE)表明,C3和O6meG10碱基堆积在螺旋中,并作为侧翼G2.C11和G4.C9碱基对之间的间隔物。通过二维相关(COSY)和核Overhauser效应(NOESY)实验,已在25℃下完全确定了O6meG.C 12聚体双链体中不可交换碱基以及H1'、H2'、H2''、H3'和H4'质子的归属。观察到的NOE及其方向性表明,O6meG.C 12聚体是右手螺旋,其中O6meG10和C3碱基在修饰位点处围绕糖苷键保持其反式构象。O6meG10的H8与O6meG10及相邻C9的糖质子之间的NOE呈现出改变的模式,表明在O6meG.C 12聚体双链体的C9 - O6meG10步中,与规则双链体相比存在小构象变化。我们提出了修饰位点处C3.OmeG10相互作用的配对方案。在低温下,O6meG.C 12聚体磷谱中的三个磷共振向正常光谱色散的低场移动,表明修饰位点处的磷酸二酯主链发生了改变。将这些NMR结果与G.C 12聚体中的相应参数进行了比较,G.C 12聚体在螺旋中的相同位置含有沃森 - 克里克碱基对。

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