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MDM2-Dependent Inhibition of p53 Is Required for Epstein-Barr Virus B-Cell Growth Transformation and Infected-Cell Survival

机译:爱泼斯坦-巴尔病毒B细胞生长转化和感染细胞存活所必需的p53 MDM2依赖抑制作用

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摘要

Epstein-Barr virus (EBV) growth transformation of primary B lymphocytes into indefinitely proliferating lymphoblastoid cell lines (LCLs) depends on the concerted activities of a subset of viral proteins expressed during latency. EBV drives quiescent B cells into S phase, and consequently, a host response is activated that includes expression of p53 and its target genes. Since LCLs retain wild-type p53, it was of interest to determine what contribution the p53 pathway may have in controlling established LCL growth and EBV-mediated transformation of primary B cells. We found that liberation of p53 through chemical antagonism of one of its major ubiquitin ligases, MDM2, using the small-molecule Nutlin-3 led to apoptosis of established LCLs and suppressed EBV-mediated transformation of primary B cells. The activation of latent p53 induced target genes associated with apoptosis. Furthermore, MDM2 antagonism synergized with NF-κB inhibition in killing LCLs. NF-κB was important to increase steady-state MDM2 protein levels rather than in affecting p53-dependent transcription, suggesting a unique mechanism by which LCLs survive in the presence of a primed p53 pathway. Nutlin sensitivity of EBV-infected cells provides a novel system for studying the pathways that dictate LCL survival and regulate EBV transformation. Finally, MDM2 antagonists may be considered for therapeutic intervention in EBV-associated malignancies expressing wild-type p53.
机译:从原代B淋巴细胞到无限增殖的淋巴母细胞样细胞系(LCL)的爱泼斯坦-巴尔病毒(EBV)生长转化取决于潜伏期表达的病毒蛋白子集的协同活性。 EBV使静止的B细胞进入S期,因此,宿主反应被激活,其中包括p53及其靶基因的表达。由于LCL保留了野生型p53,因此确定p53途径在控制已建立的LCL生长和EBV介导的原代B细胞转化中可能起什么作用是很有意义的。我们发现,通过使用小分子Nutlin-3对其主要的泛素连接酶MDM2进行化学拮抗,可以释放p53,从而导致已建立的LCL凋亡并抑制EBV介导的原代B细胞转化。潜在的p53的激活诱导与凋亡相关的靶基因。此外,在杀死LCL中,MDM2拮抗作用与NF-κB抑制作用协同作用。 NF-κB对于增加稳态MDM2蛋白水平至关重要,而不是影响p53依赖性转录,这表明LCL在存在引发的p53途径时得以生存的独特机制。 EBV感染细胞的Nutlin敏感性为研究指示LCL存活并调节EBV转化的途径提供了一个新颖的系统。最后,可以考虑将MDM2拮抗剂用于表达野生型p53的EBV相关恶性肿瘤的治疗干预。

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