首页> 外文期刊>Anti-Cancer Drug Design >Comparison of the patterns of DNA alkylation by phenol and amino seco-CBI-TMI compounds: use of a PCR method for the facile preparation of single end-labelled double-stranded DNA.
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Comparison of the patterns of DNA alkylation by phenol and amino seco-CBI-TMI compounds: use of a PCR method for the facile preparation of single end-labelled double-stranded DNA.

机译:通过苯酚和氨基seco-CBI-TMI化合物进行的DNA烷基化方式的比较:PCR的制备方法,用于简便地制备单末端标记的双链DNA。

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摘要

Both 5-hydroxy- and 5-amino-seco-CBI-TMI minor groove alkylators are very potent cytotoxins. The patterns of alkylation of the two enantiomers of both compounds were compared on a section of the gpt gene. All of the compounds alkylated only at adenines, with the amino compounds being slightly more selective. Consensus alkylation sequences for both S (natural) enantiomers were identical, but for the R (unnatural) enantiomers these varied slightly. The consensus sequences suggest that the S enantiomers bind lying in the 3'-->5' direction from the alkylated adenine, but there was no clear indication of which direction the R enantiomers lie on the DNA. Both S enantiomers were 10- to 100-fold more efficient alkylators than the R enantiomers, and the amino compounds were somewhat more efficient than the corresponding phenols. The S enantiomers were more cytotoxic then the R in both the phenol and amino series. The large amounts of end-labelled DNA required for this work was obtained by first end-labelling appropriate primer oligonucleotides, then amplifying by PCR. Compared with other methods in use, this is a simple and flexible one-step procedure for the preparation of labelled DNA of any sequence. An improvement in the synthesis of 5-hydroxy-seco-CBI-TMI is reported.
机译:5-羟基和5-氨基-seco-CBI-TMI小沟烷基化子都是非常有效的细胞毒素。在gpt基因的一部分上比较了两种化合物的两种对映体的烷基化模式。所有化合物仅在腺嘌呤处烷基化,而氨基化合物的选择性更高。两种S(天然)对映异构体的共识烷基化顺序相同,但对于R(非天然)对映异构体,则略有不同。共有序列表明,S对映异构体从烷基化腺嘌呤以3'-> 5'方向结合,但没有明确指示R对映异构体位于DNA的哪个方向。两种S对映异构体的效率都比R对映异构体高10至100倍,而氨基化合物的效率比相应的酚要高一些。在苯酚和氨基系列中,S对映体的细胞毒性均比R高。通过首先对适当的引物寡核苷酸进行末端标记,然后通过PCR扩增,获得了这项工作所需的大量末端标记的DNA。与使用中的其他方法相比,这是制备任何序列的标记DNA的简单灵活的一步步骤。据报道5-羟基-seco-CBI-TMI的合成得到改善。

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