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首页> 外文期刊>Mutation Research: International Journal on Mutagenesis, Chromosome Breakage and Related Subjects >DNA recombinase activity of eukaryotic DNA topoisomerase I; effects of camptothecin and other inhibitors.
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DNA recombinase activity of eukaryotic DNA topoisomerase I; effects of camptothecin and other inhibitors.

机译:真核DNA拓扑异构酶I的DNA重组酶活性;喜树碱和其他抑制剂的作用

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DNA oligonucleotides containing a strong topoisomerase I cleavage site were used to study the DNA cleavage and strand transferase activities of calf thymus topoisomerase I (top1) in the absence and presence of camptothecin. A partially single-stranded oligonucleotide with only two nucleotides on the 3' side of the cleavage site (positions +1 and +2) was cleaved at the same position as the corresponding duplex oligonucleotide. However, cleavage in the absence of camptothecin was more pronounced than in the duplex oligonucleotide and was only partially reversible in the presence of 0.5 M NaCl, consistent with release of the dinucleotide 3' to the top1 break. Another reaction took place generating a larger DNA fragment which resulted from religation (strand transfer) of the 5'-hydroxyl terminus of the non-scissile DNA strand to the 3' end of the top1-linked oligonucleotide after loss of the +1 and +2 nucleotides. Top1 religation activity appeared efficient since only the last 5' base of the single-stranded DNA acceptor was complementary to the 3' tail of the donor DNA. Religation was not detectable with a double-stranded DNA acceptor, which is consistent with the persistence of top1-induced DNA double-strand breaks in camptothecin-treated cells. Camptothecin and other top1 inhibitors enhanced cleavage in both the partially single-stranded and the duplex oligonucleotides, indicating that they did not inhibit the induction of top1-mediated DNA cleavage but primarily blocked the religation step of the enzyme catalytic cycle. The top1 DNA strand transferase activity was reversibly inhibited by camptothecin and several derivatives, as well as saintopin. These results are discussed in terms of camptothecin-induced DNA recombinations.
机译:含有强拓扑异构酶I切割位点的DNA寡核苷酸用于研究在没有喜树碱存在下和小牛胸腺拓扑异构酶I(top1)的DNA切割和链转移酶活性。在裂解位点(位置+1和+2)的3'侧仅具有两个核苷酸的部分单链寡核苷酸在与相应的双链体寡核苷酸相同的位置处被裂解。然而,在没有喜树碱的情况下的裂解比在双链寡核苷酸中的裂解更明显,并且在存在0.5M NaCl的情况下仅是部分可逆的,这与二核苷酸3'释放至top1断裂相一致。发生了另一反应,产生了较大的DNA片段,这是由于失去了+1和+后,非可断裂DNA链的5'-羟基末端重新连接(链转移)至top1连接的寡核苷酸的3'端而导致的2个核苷酸。由于只有单链DNA受体的最后5'碱基与供体DNA的3'尾端互补,因此Top1的连接活性似乎很有效。用双链DNA受体检测不到宗教,这与喜树碱处理过的细胞中top1诱导的DNA双链断裂的持续存在是一致的。喜树碱和其他top1抑制剂可增强部分单链寡核苷酸和双链寡核苷酸的裂解,表明它们不抑制top1介导的DNA裂解的诱导,但主要阻断了酶催化循环的连接步骤。 top1 DNA链转移酶的活性被喜树碱和几种衍生物以及塞恩托平可逆地抑制。关于喜树碱诱导的DNA重组,讨论了这些结果。

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