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Telomeres and Telomerase: Role in Marek’s Disease Virus Pathogenesis, Integration and Tumorigenesis

机译:端粒和端粒酶:在马立克氏病病毒的发病机理,整合和肿瘤发生中的作用

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Telomeres protect the ends of vertebrate chromosomes from deterioration and consist of tandem nucleotide repeats (TTAGGG) n that are associated with a number of proteins. Shortening of the telomeres occurs during genome replication, thereby limiting the replication potential of somatic cells. To counteract this shortening, vertebrates encode the telomerase complex that maintains telomere length in certain cell types via de novo addition of telomeric repeats. Several herpesviruses, including the highly oncogenic alphaherpesvirus Marek’s disease virus (MDV), harbor telomeric repeats (TMR) identical to the host telomere sequences at the ends of their linear genomes. These TMR facilitate the integration of the MDV genome into host telomeres during latency, allowing the virus to persist in the host for life. Integration into host telomeres is critical for disease and tumor induction by MDV, but also enables efficient reactivation of the integrated virus genome. In addition to the TMR, MDV also encodes a telomerase RNA subunit (vTR) that shares 88% sequence identity with the telomerase RNA in chicken (chTR). vTR is highly expressed during all stages of the virus lifecycle, enhances telomerase activity and plays an important role in MDV-induced tumor formation. This review will focus on the recent advances in understanding the role of viral TMR and vTR in MDV pathogenesis, integration and tumorigenesis.
机译:端粒可保护脊椎动物染色体的末端免于变质,并由与许多蛋白质相关的串联核苷酸重复序列(TTAGGG)n组成。端粒的缩短发生在基因组复制期间,从而限制了体细胞的复制潜力。为了抵消这种缩短,脊椎动物编码端粒酶复合物,通过从头添加端粒重复序列来维持某些细胞类型中端粒的长度。几种疱疹病毒,包括高度致癌的α疱疹病毒马立克氏病病毒(MDV),在其线性基因组末端带有与宿主端粒序列相同的端粒重复序列(TMR)。这些TMR有助于在潜伏期将MDV基因组整合到宿主端粒中,从而使病毒能够在宿主中持久存在。整合入宿主端粒对于通过MDV诱导疾病和肿瘤至关重要,但也可以使整合的病毒基因组有效地重新激活。除TMR外,MDV还编码与鸡的端粒酶RNA(chTR)共享88%序列同一性的端粒酶RNA亚基(vTR)。 vTR在病毒生命周期的所有阶段均高度表达,增强端粒酶活性,并在MDV诱导的肿瘤形成中起重要作用。这项审查将侧重于了解病毒TMR和vTR在MDV发病机理,整合和肿瘤发生中的作用的最新进展。

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