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

Structural studies of the O6meG.T interaction in the d(C-G-T-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):1036-42. doi: 10.1021/bi00353a013.

DOI:10.1021/bi00353a013
PMID:3964659
Abstract

High-resolution proton and phosphorus NMR studies are reported on the self-complementary d(C1-G2-T3-G4-A5-A6-T7-T8-C9-O6meG10-C11-G12) duplex (henceforth called O6meG.T 12-mer), which contains T3.O6meG10 interactions in the interior of the helix. The imino proton of T3 is observed at 9.0 ppm, exhibits a temperature-independent chemical shift in the premelting transition range, and broadens out at the same temperature as the imino proton of the adjacent G2.C11 toward the end of the helix at pH 6.8. We observed inter base pair nuclear Overhauser effects (NOEs) between the base protons at the T3.O6meG10 modification site and the protons of flanking G2.C11 and G4.C9 base pairs, indicative of the stacking of the T3 and O6meG10 bases into the helix. Two-dimensional correlated (COSY) and nuclear Overhauser effect (NOESY) studies have permitted assignment of the base and sugar H1', H2', and H2'' nonexchangeable protons in the O6meG.T 12-mer duplex. The observed NOEs demonstrate an anti conformation about all the glycosidic bonds, and their directionality supports formation of a right-handed helix in solution. The observed NOEs between the T3.O6meG10 interaction and the adjacent G2.C11 and G4.C9 base pairs at the modification site exhibit small departures from patterns for a regular helix in the O6.meG.T 12-mer duplex. The phosphorus resonances exhibit a 0.5 ppm spectral dispersion indicative of an unperturbed phosphodiester backbone for the O6meG.T 12-mer duplex. We propose a model for pairing of T3 and O6meG10 at the modification site in the O6meG.T 12-mer duplex.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

报道了对自我互补的d(C1-G2-T3-G4-A5-A6-T7-T8-C9-O6meG10-C11-G12)双链体(以下简称O6meG.T 12聚体)的高分辨率质子和磷核磁共振研究,该双链体在螺旋内部含有T3.O6meG10相互作用。T3的亚氨基质子在9.0 ppm处被观测到,在预熔转变范围内呈现出与温度无关的化学位移,并且在pH 6.8时,在与螺旋末端相邻的G2.C11的亚氨基质子相同的温度下变宽。我们观测到T3.O6meG10修饰位点处的碱基质子与侧翼G2.C11和G4.C9碱基对的质子之间存在碱基对间核Overhauser效应(NOE),这表明T3和O6meG10碱基堆叠到了螺旋中。二维相关(COSY)和核Overhauser效应(NOESY)研究使得能够对O6meG.T 12聚体双链体中的碱基和糖的H1'、H2'和H2''非交换质子进行归属。观测到的NOE表明所有糖苷键均为反式构象,并且它们的方向性支持在溶液中形成右手螺旋。在O6.meG.T 12聚体双链体中,在修饰位点处T3.O6meG10相互作用与相邻的G2.C11和G4.C9碱基对之间观测到的NOE与规则螺旋的模式略有不同。磷共振显示出0.5 ppm的光谱分散,表明O6meG.T 12聚体双链体的磷酸二酯主链未受干扰。我们提出了一个关于O6meG.T 12聚体双链体修饰位点处T3和O6meG10配对的模型。(摘要截短于250字)

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