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The heterochromatic chromosome caps in great apes impact telomere metabolism

机译:大猿中的异色染色体帽影响端粒代谢

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In contrast with the limited sequence divergence accumulated after separation of higher primate lineages, marked cytogenetic variation has been associated with the genome evolution in these species. Studying the impact of such structural variations on defined molecular processes can provide valuable insights on how genome structural organization contributes to organismal evolution. Here, we show that telomeres on chromosome arms carrying subtelomeric heterochromatic caps in the chimpanzee, which are completely absent in humans, replicate later than telomeres on chromosome arms without caps. In gorilla, on the other hand, a proportion of the subtelomeric heterochromatic caps present in most chromosome arms are associated with large blocks of telomere-like sequences that follow a replication program different from that of bona fide telomeres. Strikingly, telomere-containing RNA accumulates extrachromosomally in gorilla mitotic cells, suggesting that at least some aspects of telomere-containing RNA biogenesis have diverged in gorilla, perhaps in concert with the evolution of heterochromatic caps in this species.
机译:与分离高等灵长类世系后积累的有限序列差异相反,显着的细胞遗传学变异与这些物种的基因组进化有关。研究此类结构变异对定义的分子过程的影响可以提供有关基因组结构组织如何促进生物进化的宝贵见解。在这里,我们显示了在黑猩猩中携带亚端粒异色帽的染色体臂上的端粒,在人类中完全不存在,其复制比没有帽的染色体臂上的端粒晚。另一方面,在大猩猩中,大多数染色体臂中存在的一部分亚端粒异色帽与端粒样序列的大块相关,该端粒遵循与真正端粒不同的复制程序。令人惊讶的是,含端粒的RNA在染色体上在大猩猩有丝分裂细胞中蓄积,这表明至少端粒含RNA的生物发生的某些方面在大猩猩中有所不同,这可能与该物种中异色帽的进化相一致。

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