首页> 外文期刊>Differentiation: The Journal of the International Society of Differentiation >Stretching, scrambling, piercing and entangling: Challenges for telomeres in mitotic and meiotic chromosome segregation
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Stretching, scrambling, piercing and entangling: Challenges for telomeres in mitotic and meiotic chromosome segregation

机译:伸展,加扰,刺穿和缠绕:有丝分裂和减数分裂染色体隔离的端粒挑战

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摘要

The consequences of telomere loss or dysfunction become most prominent when cells enter the nuclear division stage of the cell cycle. At this climactic stage when chromosome segregation occurs, telomere fusions or entanglements can lead to chromosome breakage, wreaking havoc on genome stability. Here we review recent progress in understanding the mechanisms of detangling and breaking telomere associations at mitosis, as well as the unique ways in which telomeres are processed to allow regulated sister telomere separation. Moreover, we discuss unexpected roles for telomeres in orchestrating nuclear envelope breakdown and spindle formation, crucial processes for nuclear division. Finally, we discuss the discovery that telomeres create microdomains in the nucleus that are conducive to centromere assembly, cementing the unexpectedly influential role of telomeres in mitosis.
机译:当细胞进入细胞周期的核划分阶段时,端粒损失或功能障碍的后果变得最突出。 在这种活跃的阶段,当发生染色体隔离时,端粒融合或缠结会导致染色体破裂,对基因组稳定性造成严重破坏。 在这里,我们审查了解理解解毒和破坏有丝分裂端粒关联的机制的进展,以及加工端粒的独特方式,以允许调节姐妹端粒分离。 此外,我们讨论了在协调核包封击穿和主轴形成,核划分过程中的端粒化的意外角色。 最后,我们讨论了端粒体在核心中产生微氮瘤的发现,这些细胞核有利于CentroMere组装,巩固了端粒在有丝分裂中的意外影响力。

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