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致癌物修饰核酸二聚体构象的13C和31P核磁共振研究。

13C- and 31P-NMR studies of the conformation of carcinogen-modified nucleic acid dimers.

作者信息

Box H C, Lilga K T, French J, Alderfer J L

出版信息

Chem Biol Interact. 1984 Nov;52(1):93-102. doi: 10.1016/0009-2797(84)90085-1.

Abstract

The effect of the carcinogen acetylaminofluorene (AAF) on nucleic acid structure was examined using 13C- and 31P-NMR spectroscopies. Conformational effects were compared in two AAF-modified dinucleoside monophosphates (ApG and GpA) and two AAF-modified deoxydinucleotides (dpApG and dpGpA). Changes in adenine 13C chemical shifts on formation of the AAF-adduct and as a function of temperature provided evidence of base stacking. Differences in fluorene 13C chemical shifts between the AAF-modified dimer and AAF-modified monomer provided evidence of fluorene stacking. The effect of forming the adduct on the phosphate backbone was examined using 31P-NMR. A correlation was demonstrated between the degree of adenine-fluorene stacking on one hand and the change in conformation of the backbone conformation on the other.

摘要

使用13C和31P核磁共振光谱法研究了致癌物乙酰氨基芴(AAF)对核酸结构的影响。比较了两种AAF修饰的单磷酸二核苷(ApG和GpA)以及两种AAF修饰的脱氧二核苷酸(dpApG和dpGpA)的构象效应。形成AAF加合物时腺嘌呤13C化学位移的变化以及作为温度函数的变化提供了碱基堆积的证据。AAF修饰的二聚体和AAF修饰的单体之间芴13C化学位移的差异提供了芴堆积的证据。使用31P核磁共振研究了形成加合物对磷酸主链的影响。一方面证明了腺嘌呤-芴堆积程度与另一方面主链构象变化之间的相关性。

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