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Replication Timing of Human Telomeres Is Chromosome Arm–Specific Influenced by Subtelomeric Structures and Connected to Nuclear Localization

机译:人类端粒的复制时间是特定于染色体的受亚端粒结构影响并与核定位有关。

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摘要

The mechanisms governing telomere replication in humans are still poorly understood. To fill this gap, we investigated the timing of replication of single telomeres in human cells. Using in situ hybridization techniques, we have found that specific telomeres have preferential time windows for replication during the S-phase and that these intervals do not depend upon telomere length and are largely conserved between homologous chromosomes and between individuals, even in the presence of large subtelomeric segmental polymorphisms. Importantly, we show that one copy of the 3.3 kb macrosatellite repeat D4Z4, present in the subtelomeric region of the late replicating 4q35 telomere, is sufficient to confer both a more peripheral localization and a later-replicating property to a de novo formed telomere. Also, the presence of β-satellite repeats next to a newly created telomere is sufficient to delay its replication timing. Remarkably, several native, non-D4Z4–associated, late-replicating telomeres show a preferential localization toward the nuclear periphery, while several early-replicating telomeres are associated with the inner nuclear volume. We propose that, in humans, chromosome arm–specific subtelomeric sequences may influence both the spatial distribution of telomeres in the nucleus and their replication timing.
机译:尚不清楚人类控制端粒复制的机制。为了填补这一空白,我们研究了人类细胞中单个端粒复制的时间。使用原位杂交技术,我们发现特定的端粒具有在S期复制的优先时间窗,并且这些间隔不依赖于端粒的长度,即使存在大量的染色体,它们在同源染色体之间和个体之间也基本上是保守的。亚端粒节段多态性。重要的是,我们表明,存在于晚期复制4q35端粒的亚端粒区域中的一个3.3 kb的大卫星重复序列D4Z4拷贝足以赋予从头形成的端粒更多的周边定位能力和后期复制特性。同样,在新产生的端粒旁边存在β卫星重复序列足以延迟其复制时间。值得注意的是,一些天然的,非D4Z4相关的,晚期复制的端粒显示出优先定位于核外围,而一些早期复制的端粒与内部核体积相关。我们建议,在人类中,染色体臂特异的亚端粒序列可能会影响端粒在细胞核中的空间分布及其复制时机。

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