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Telomeres and viruses: common themes of genome maintenance

机译:端粒和病毒:基因组维护共同的主题

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摘要

Genome maintenance mechanisms actively suppress genetic instability associated with cancer and aging. Some viruses provoke genetic instability by subverting the host’s control of genome maintenance. Viruses have their own specialized strategies for genome maintenance, which can mimic and modify host cell processes. Here, we review some of the common features of genome maintenance utilized by viruses and host chromosomes, with a particular focus on terminal repeat (TR) elements. The TRs of cellular chromosomes, better known as telomeres, have well-established roles in cellular chromosome stability. Cellular telomeres are themselves maintained by viral-like mechanisms, including self-propagation by reverse transcription, recombination, and retrotransposition. Viral TR elements, like cellular telomeres, are essential for viral genome stability and propagation. We review the structure and function of viral repeat elements and discuss how they may share telomere-like structures and genome protection functions. We consider how viral infections modulate telomere regulatory factors for viral repurposing and can alter normal host telomere structure and chromosome stability. Understanding the common strategies of viral and cellular genome maintenance may provide new insights into viral–host interactions and the mechanisms driving genetic instability in cancer.
机译:基因组维持机制积极抑制与癌症和衰老相关的遗传不稳定。一些病毒通过破坏宿主对基因组维持的控制而引发遗传不稳定。病毒有自己专门的基因组维护策略,可以模仿和修饰宿主细胞过程。在这里,我们回顾了病毒和宿主染色体利用的基因组维护的一些常见特征,特别着重于末端重复(TR)元素。细胞染色体的TRs,也称为端粒,在细胞染色体稳定性中具有公认的作用。细胞端粒本身通过病毒样机制来维持,包括通过逆转录,重组和逆转座进行自我繁殖。病毒TR元件(如细胞端粒)对于病毒基因组的稳定性和繁殖至关重要。我们审查了病毒重复元件的结构和功能,并讨论了它们如何共享端粒样结构和基因组保护功能。我们考虑病毒感染如何调节端粒调节因子进行病毒再利用,并可以改变正常宿主端粒的结构和染色体稳定性。了解病毒和细胞基因组维持的共同策略可能为病毒-宿主相互作用以及驱动癌症遗传不稳定的机制提供新的见解。

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