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Coordinate Regulation of G- and C Strand Length during New Telomere Synthesis

机译:新时期G链和C链长度的协调调节 端粒合成

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摘要

We have used the ciliate Euplotes to study the role of DNA polymerase in telomeric C strand synthesis. Euplotes provides a unique opportunity to study C strand synthesis without the complication of simultaneous DNA replication because millions of new telomeres are made at a stage in the life cycle when no general DNA replication takes place. Previously we showed that the C-strands of newly synthesized telomeres have a precisely controlled length while the G-strands are more heterogeneous. This finding suggested that, although synthesis of the G-strand (by telomerase) is the first step in telomere addition, a major regulatory step occurs during subsequent C strand synthesis. We have now examined whether G- and C strand synthesis might be regulated coordinately rather than by two independent mechanisms. We accomplished this by determining what happens to G- and C strand length if C strand synthesis is partially inhibited by aphidicolin. Aphidicolin treatment caused a general lengthening of the G-strands and a large increase in C strand heterogeneity. This concomitant change in both the G- and C strand length indicates that synthesis of the two strands is coordinated. Since aphidicolin is a very specific inhibitor of DNA polα and polδ, our results suggest that this coordinate length regulation is mediated by DNA polymerase.
机译:我们已经使用纤毛虫Euplotes来研究DNA聚合酶在端粒C链合成中的作用。 Euplotes提供了一个独特的机会来研究C链合成,而无需同时进行DNA复制,这是因为在生命周期的某个阶段会产生数百万个新的端粒,而一般DNA不会复制。先前,我们显示了新合成的端粒的C链长度受到精确控制,而G链更加不均一。这一发现表明,尽管通过端粒酶合成G链是端粒添加的第一步,但在随后的C链合成过程中却发生了主要的调控步骤。现在,我们研究了G和C链的合成是否可能受到协调调控,而不是由两个独立的机制调控。我们通过确定如果C链的合成部分受到蚜虫的抑制而改变了G和C链的长度来实现这一点。 Aphidicolin处理导致G链普遍延长,C链异质性大大增加。 G和C的伴随变化 链长表明两条链的合成是 协调。由于蚜虫蛋白是一种非常特殊的DNA抑制剂 polα和polδ,我们的结果表明该坐标长度 DNA聚合酶介导调节。

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