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Formation of DNA triple helices inhibits DNA unwinding by the SV40 large T-antigen helicase.

机译:DNA三重螺旋的形成抑制了SV40大T抗原解旋酶的DNA解旋。

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摘要

Previous studies have indicated that d(TC)n.d(GA)n microsatellites may serve as arrest signals for mammalian DNA replication through the ability of such sequences to form DNA triple helices and thereby inhibit replication enzymes. To further test this hypothesis, we examined the ability of d(TC)i.d(GA)i.d(TC)i triplexes to inhibit DNA unwinding in vitro by a model eukaryotic DNA helicase, the SV40 large T-antigen. DNA substrates that were able to form triplexes, and non-triplex-forming control substrates, were tested. We found that the presence of DNA triplexes, as assayed by endonuclease S1 and osmium tetroxide footprinting, significantly inhibited DNA unwinding by T-antigen. Strong inhibition was observed not only at acidic pH values, in which the triplexes were most stable, but also at physiological pH values in the range 6.9-7.2. Little or no inhibition was detected at pH 8.7. Based on these results, and on previous studies of DNA polymerases, we suggest that DNA triplexes may form in vivo and cause replication arrest through a dual inhibition of duplex unwinding by DNA helicases and of nascent strand synthesis by DNA polymerases. DNA triplexes also have the potential to inhibit recombination and repair processes in which helicases and polymerases are involved.
机译:先前的研究表明,d(TC)n.d(GA)n微卫星可以通过此类序列形成DNA三重螺旋的能力来抑制哺乳动物DNA复制,从而抑制复制酶。为了进一步检验该假设,我们检查了d(TC)i.d(GA)i.d(TC)i三联体在体外通过模型真核DNA解旋酶SV40大T抗原抑制DNA展开的能力。测试了能够形成三链体的DNA底物和非三链体形成的对照底物。我们发现,通过核酸内切酶S1和四氧化足迹分析,DNA三链体的存在可显着抑制T抗原解链的DNA。不仅在三重链最稳定的酸性pH值处观察到强烈抑制,而且在6.9-7.2范围内的生理pH值处也观察到强抑制作用。在pH 8.7下几乎没有检测到抑制作用。基于这些结果以及对DNA聚合酶的先前研究,我们建议DNA三链体可能在体内形成,并通过双重抑制DNA解旋酶的双链解链和DNA聚合酶新生链的合成而引起复制停滞。 DNA三链体也具有抑制涉及解旋酶和聚合酶的重组和修复过程的潜力。

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