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Early and late steps in telomere overhang processing in normal human cells: the position of the final RNA primer drives telomere shortening

机译:正常人细胞中端粒突出端处理的早期和晚期步骤:最终RNA引物的位置驱动端粒缩短

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摘要

Telomere overhangs are essential for telomere end protection and telomerase extension, but how telomere overhangs are generated is unknown. Leading daughter strands synthesized by conventional semiconservation DNA replication are initially blunt, while lagging daughter strands are shorter by at least the size of the final RNA primer, which is thought to be located at extreme chromosome ends. We developed a variety of new approaches to define the steps in the processing of these overhangs. We show that the final lagging RNA primer is not terminal but is randomly positioned ∼70–100 nucleotides from the ends and is not removed for more than an hour. This identifies an important intrinsic step in replicative aging. Telomeric termini are processed in two distinct phases. During the early phase, which occupies 1–2 h following replication of the duplex telomeric DNA, several steps occur on both leading and lagging daughters. Leading telomere processing remains incomplete until late S/G2, when the C-terminal nucleotide is specified—referred to as the late phase. These observations suggest the presence of previously unsuspected complexes and signaling events required for the replication of the ends of human chromosomes.
机译:端粒突出端对于端粒末端保护和端粒酶延伸是必不可少的,但是端粒突出端的产生方式尚不清楚。通过传统的半保守DNA复制合成的前导子链最初是钝的,而落后的子链则要短至少最终RNA引物的大小,后者被认为位于极端染色体末端。我们开发了各种新方法来定义处理这些突出部分的步骤。我们显示出最后的滞后RNA引物不是末端,而是从末端随机定位〜70–100个核苷酸,并且不会被移除超过一个小时。这确定了复制老化中的重要内在步骤。端粒末端在两个不同的阶段进行处理。在早期阶段,即复制双链端粒DNA后的1-2小时,在后代和后代子代上都发生了几个步骤。直到端粒S / G2被指定为C端核苷酸(称为晚期)时,端粒的前导加工仍不完全。这些观察表明存在以前未曾怀疑的复合物和复制人类染色体末端所需的信号事件。

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