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Pericentromeric Regions Are Refractory To Prompt Repair after Replication Stress-Induced Breakage in HPV16 E6E7-Expressing Epithelial Cells

机译:着丝粒区域是难治及时抢修复制应激诱导破损的HpV16后E6E7表达上皮细胞

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摘要

Chromosomal instability is the major form of genomic instability in cancer cells. Amongst various forms of chromosomal instability, pericentromeric or centromeric instability remains particularly poorly understood. In the present study, we found that pericentromeric instability, evidenced by dynamic formation of pericentromeric or centromeric rearrangements, breaks, deletions or iso-chromosomes, was a general phenomenon in human cells immortalized by expression of human papillomavirus type 16 E6 and E7 (HPV16 E6E7). In particular, for the first time, we surprisingly found a dramatic increase in the proportion of pericentromeric chromosomal aberrations relative to total aberrations in HPV16 E6E7-expressing cells 72 h after release from aphidicolin (APH)-induced replication stress, with pericentromeric chromosomal aberrations becoming the predominant type of structural aberrations (∼70% of total aberrations). In contrast, pericentromeric aberrations accounted for only about 20% of total aberrations in cells at the end of APH treatment. This increase in relative proportion of pericentromeric aberrations after release from APH treatment revealed that pericentromeric breaks induced by replication stress are refractory to prompt repair in HPV16 E6E7-expressing epithelial cells. Telomerase-immortalized epithelial cells without HPV16 E6E7 expression did not exhibit such preferential pericentromeric instability after release from APH treatment. Cancer development is often associated with replication stress. Since HPV16 E6 and E7 inactivate p53 and Rb, and p53 and Rb pathway defects are common in cancer, our finding that pericentromeric regions are refractory to prompt repair after replication stress-induced breakage in HPV16 E6E7-expressing cells may shed light on mechanism of general pericentromeric instability in cancer.
机译:染色体不稳定性是癌细胞中基因组不稳定性的主要形式。在各种形式的染色体不稳定性中,对着丝粒或着丝粒的稳定性仍然知之甚少。在本研究中,我们发现以着丝粒或着丝粒重排,断裂,缺失或异染色体的动态形成为特征的着丝粒不稳定性是通过表达人乳头瘤病毒16 E6和E7(HPV16 E6E7)永生的普遍现象。 )。特别是,我们首次令人惊讶地发现,从由蚜虫蛋白(APH)诱导的复制压力释放后72小时,表达HPV16 E6E7的细胞中,围绕着中心的染色体畸变的比例相对于总畸变急剧增加,而围绕着中心的染色体畸变成为结构像差的主要类型(约占总像差的70%)。相反,在APH治疗结束时,着重于中心的畸变仅占细胞总畸变的约20%。从APH处理释放后,围绕着腹膜的畸变的相对比例的增加表明,由复制压力诱导的围绕着膜腹的断裂对于表达HPV16 E6E7的上皮细胞的修复是难治的。从APH处理释放后,没有HPV16 E6E7表达的端粒酶永生化的上皮细胞没有表现出这种优先的围绕着中心大体的不稳定性。癌症的发展通常与复制压力有关。由于HPV16 E6和E7使p53和Rb失活,并且p53和Rb通路缺陷在癌症中很常见,因此我们发现,复制应力诱导的表达HPV16 E6E7的细胞破裂后,着丝粒区域难以修复,这可能有助于阐明一般机制。癌症的腹膜周围不稳定性。

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