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Use of oligonucleotides to define the site of interstrand cross-links induced by Adriamycin.

机译:使用寡核苷酸确定由阿霉素诱导的链间交联的位点。

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摘要

It has been known for several years that Adriamycin forms adducts and interstrand cross-links when reacted for long periods of time with bacterial and mammalian DNA in vitro, with the cross-link being restricted to 2 bp elements containing GpC sequences. The self-complementary 20mer deoxyoligonucleotide TA4T4GCA4T4A has been used in this study as a model of the apparent G-G cross-linking site at GpC sequences. The rate of formation of cross-links, as well as the dependence on both Adriamycin and Fe(III) concentration, were similar with this oligonucleotide as compared with calf thymus DNA. The cross-linking was demonstrated on both denaturing and non-denaturing sequencing gels. The half-life of the G-G cross-link was 40 h, consistent with that implied with high molecular weight, heterogeneous sequence DNA. Exonuclease III digests of adducts formed with 20mer deoxyoligonucleotides containing single, central G-G, G-I and I-I potential cross-links revealed that a guanine residue is required at both ends of the cross-link. No cross-linking was observed with a similar oligonucleotide containing only a single central (G.C) bp.
机译:几年来已知,阿霉素在体外与细菌和哺乳动物DNA长时间反应时会形成加合物和链间交联,该交联限于含有GpC序列的2 bp元件。自互补的20mer脱氧寡核苷酸TA4T4GCA4T4A已用于本研究中,作为GpC序列表观G-G交联位点的模型。与小牛胸腺DNA相比,该寡核苷酸的交联形成速率以及对阿霉素和Fe(III)浓度的依赖性均相似。在变性和非变性测序凝胶上均证明了交联。 G-G交联的半衰期为40 h,与高分子量异质序列DNA暗示的半衰期一致。与包含单个,中央G-G,G-I和I-I潜在交联的20mer脱氧寡核苷酸形成的加合物的核酸外切酶III消化物显示,在交联的两端均需要鸟嘌呤残基。用仅包含一个中央(G.C)bp的相似寡核苷酸没有观察到交联。

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