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蒽环类药物与DNA及染色体的相互作用。

Interaction of anthracyclines with DNA and chromosomes.

作者信息

Johnston F P, Jorgenson K F, Lin C C, van de Sande J H

出版信息

Chromosoma. 1978 Aug 28;68(2):115-29. doi: 10.1007/BF00287144.

Abstract

Daunomycin and adriamycin were previously found to produce Q-like banding patterns on chromosomes. The interaction of several anthracyclines with both natural and synthetic DNAs and chromosomes has been investigated in more detail. Daunomycin fluorescence is almost completely quenched by natural DNAs with varying base composition from 31 to 72% G-C and by the alternating polymer poly-d(G-C).poly-d(G-C). In contrast, daunomycin fluorescence is quenched by only 50% when the dye interacts with synthetic A-T polymers. Thus, differential quenching of daunomycin fluorescence can account for the production of bright bands at contiguous A-T sequences along the chromosome. Slight differences in fluorescence quenching between the repeating and homopolymeric A-T duplex DNAs were observed which can be attributed to differences in affinity of daunomycin for these DNAs. The aminosugar moiety of daunomycin, daunosamine, increases the binding of daunomycin to DNA and also enhances chromosome banding.--Nogalamycin, which displays no differential quenching with the different DNAs in solution, also fails to produce bands on chromosomes.--These findings suggest that non-random nucleotide sequence arrangements along the chromosome are a basic determinant for dye interaction to produce the observed banding patterns. Specific banding procedures may determine the accessibility of these sites within the chromosomal DNA.

摘要

先前发现柔红霉素和阿霉素能在染色体上产生类似Q带的模式。人们对几种蒽环类药物与天然和合成DNA及染色体的相互作用进行了更详细的研究。柔红霉素荧光几乎被碱基组成为31%至72% G-C的天然DNA以及交替聚合物聚-d(G-C).聚-d(G-C)完全淬灭。相比之下,当该染料与合成的A-T聚合物相互作用时,柔红霉素荧光仅被淬灭50%。因此,柔红霉素荧光的差异淬灭可以解释沿着染色体连续A-T序列处亮带的产生。观察到重复的和同聚的A-T双链DNA之间在荧光淬灭上有细微差异,这可归因于柔红霉素对这些DNA亲和力的差异。柔红霉素的氨基糖部分柔红糖胺增加了柔红霉素与DNA的结合,也增强了染色体显带。诺加霉素在溶液中与不同DNA没有差异淬灭,在染色体上也不能产生带。这些发现表明,沿着染色体的非随机核苷酸序列排列是染料相互作用产生观察到的显带模式的基本决定因素。特定的显带程序可能决定了染色体DNA内这些位点的可及性。

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