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纺锤菌素.dG-dG-dA-dA-dT-dT-dC-dC复合物。抗生素在自我互补八核苷酸双链体小沟中的腺嘌呤.胸腺嘧啶碱基对处结合。

Netropsin . dG-dG-dA-dA-dT-dT-dC-dC complex. Antibiotic binding at adenine . thymine base pairs in the minor groove of the self-complementary octanucleotide duplex.

作者信息

Patel D J

出版信息

Eur J Biochem. 1979 Sep;99(2):369-78. doi: 10.1111/j.1432-1033.1979.tb13265.x.

Abstract

The structure of the netropsin . dG-dG-dA-dA-dT-dT-dC-dC complex (one antibiotic molecule/self-complementary octanucleodide duplex) and its dynamics as a function of temperature have been monitored by the nuclear magnetic resonances of the Watson-Crick protons, the nonexchangeable base and sugar protons and the backbone phosphates. The antibiotic forms a complex with the nucleic acid duplex at the dA . dT-containing tetranucleotide segment dA-dA-dT-dT, with slow migration amongst potential binding sites at low temperature. The downfield shifts in the exchangeable protons of netropsin on complex formation demonstrate the contributions of hydrogen-bonding interactions between the antibiotic and the nucleic acid to the stability of the complex. Complex formation results in changes in the glycosidic torsion angles of both thymidine residues and one deoxyadenosine residue as monitored by chemical shift changes in the thymine C-6 and adenine C-8 protons. The close proximity of the pyrrole rings of the antibiotic and the base-pair edges in the minor groove is manifested in the downfield shifts (0.3--0.5 ppm) of the pyrrole C-3 protons of netropsin and one adenine C-2 proton and one thymine N-3 base-pair proton on complex formation. The internucleotide phosphates of the octanucleotide undergo 31P chemical shift changes on addition of netropsin and these may reflect, in part, contributions from electrostatic interactions between the charged ends of the antibiotic and the backbone phosphates of the nucleic acid.

摘要

通过对沃森-克里克质子、非交换碱基和糖质子以及主链磷酸酯进行核磁共振,监测了纺锤菌素与dG-dG-dA-dA-dT-dT-dC-dC复合物(一个抗生素分子/自互补八核苷酸双链体)的结构及其随温度变化的动力学。抗生素在含有dA.dT的四核苷酸片段dA-dA-dT-dT处与核酸双链体形成复合物,在低温下在潜在结合位点之间迁移缓慢。纺锤菌素可交换质子在复合物形成时的低场位移表明抗生素与核酸之间的氢键相互作用对复合物稳定性的贡献。通过胸腺嘧啶C-6和腺嘌呤C-8质子的化学位移变化监测,复合物的形成导致两个胸腺嘧啶残基和一个脱氧腺苷残基的糖苷扭转角发生变化。抗生素的吡咯环与小沟中碱基对边缘的紧密接近表现为纺锤菌素的吡咯C-3质子以及一个腺嘌呤C-2质子和一个胸腺嘧啶N-3碱基对质子在复合物形成时的低场位移(0.3 - 0.5 ppm)。加入纺锤菌素后,八核苷酸的核苷酸间磷酸酯发生31P化学位移变化,这些变化可能部分反映了抗生素带电端与核酸主链磷酸酯之间静电相互作用的贡献。

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