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在阿糖胞苷存在的情况下合成的DNA中新生单链的释放增强。

Enhanced release of nascent single strands from DNA synthesized in the presence of arabinosylcytosine.

作者信息

Dijkwel P A, Wanka F

出版信息

Biochim Biophys Acta. 1978 Oct 24;520(3):461-71. doi: 10.1016/0005-2787(78)90131-4.

Abstract

Arabinosylcytosine at a 1 . 10(-4) molar concentration inhibited thymidine incorporation into DNA by more than 95%. In sucrose gradients the labelled dThd was predominantly found in short DNA chains. Labelled arabinosylcytosince (aC) was incorporated into DNA, as was labelled dThd, indicating that it causes a preferential inhibition of the chain polymerization rather than termination of nascent chains. This was confirmed by the observation of the conversion of short chains to normal size DNA molecules in chase experiments. In the absence of NaCl and at neutral pH a release of more than 50% of the nascent label as single strands was repeatedly observed upon sucrose gradient centrifugation. This release could be significantly reduced by 1 M NaCl, indicating that in the presence of aC the in vivo structure was preserved. This was further confirmed by the fact that aC did not cause detachment of DNA from a rapidly sedimenting nuclear structure. Based on these results, a replication model slightly different from the one suggested by Okazaki, is proposed, in which initiations of new nascent chains can occur at certain distances ahead of the replication fork.

摘要

1×10⁻⁴摩尔浓度的阿糖胞苷抑制胸苷掺入DNA的比例超过95%。在蔗糖梯度中,标记的dThd主要存在于短DNA链中。标记的阿糖胞苷(aC)与标记的dThd一样被掺入DNA,这表明它优先抑制链聚合而不是新生链的终止。在追踪实验中观察到短链转化为正常大小的DNA分子证实了这一点。在没有NaCl且中性pH条件下,蔗糖梯度离心时反复观察到超过50%的新生标记以单链形式释放。1 M NaCl可显著减少这种释放,表明在aC存在下体内结构得以保留。aC不会导致DNA从快速沉降的核结构上脱离这一事实进一步证实了这一点。基于这些结果,提出了一个与冈崎提出的模型略有不同的复制模型,其中新的新生链可以在复制叉前方一定距离处起始。

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