首页> 美国卫生研究院文献>Nucleic Acids Research >6-Thioguanine alters the structure and stability of duplex DNA and inhibits quadruplex DNA formation.
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6-Thioguanine alters the structure and stability of duplex DNA and inhibits quadruplex DNA formation.

机译:6-硫鸟嘌呤改变了双链体DNA的结构和稳定性并抑制了四链体DNA的形成。

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摘要

The ability to chemically synthesize biomolecules has opened up the opportunity to observe changes in structure and activity that occur upon single atom substitution. In favorable cases this can provide information about the roles of individual atoms. The substitution of 6-thioguanine (6SG) for guanine is a potentially very useful single atom substitution as 6SG has optical, photocrosslinking, metal ion binding and other properties of potential utility. In addition, 6-mercaptopurine is a clinically important pro-drug that is activated by conversion into 6SG by cells. The results presented here indicate that the presence of 6SG blocks the formation of quadruplex DNA. The presence of 6SG alters the structure and lowers the thermal stability of duplex DNA, but duplex DNA can be formed in the presence of 6SG. These results indicate that some of the cytotoxic activity of 6SG may be due to disruption of the quadruplex structures formed by telomere and other DNAs. This additional mode of action is consistent with the delayed onset of cytotoxicity.
机译:化学合成生物分子的能力为观察单原子取代时发生的结构和活性变化提供了机会。在有利的情况下,这可以提供有关单个原子作用的信息。用6硫代鸟嘌呤(6SG)取代鸟嘌呤是一种潜在的非常有用的单原子取代,因为6SG具有光学,光交联,金属离子结合和其他潜在用途的特性。此外,6-巯基嘌呤是一种临床上重要的前药,可通过细胞转化为6SG来激活。此处显示的结果表明6SG的存在会阻止四链DNA的形成。 6SG的存在会改变双链体DNA的结构并降低其热稳定性,但是6SG的存在会形成双链体DNA。这些结果表明6SG的某些细胞毒活性可能是由于端粒和其他DNA形成的四链体结构的破坏。这种额外的作用方式与细胞毒性的延迟发作相一致。

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