首页> 美国卫生研究院文献>Journal of Virology >Epstein-Barr Virus Nuclear Antigen 1 Hijacks the Host Kinase CK2 To Disrupt PML Nuclear Bodies
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Epstein-Barr Virus Nuclear Antigen 1 Hijacks the Host Kinase CK2 To Disrupt PML Nuclear Bodies

机译:爱泼斯坦-巴尔病毒核抗原1劫持宿主激酶CK2破坏PML核体

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摘要

Latent Epstein-Barr virus (EBV) infection is an important causative factor in the development of several cancers, including nasopharyngeal carcinoma (NPC). The one EBV protein expressed in the nucleus of NPC cells, EBNA1, has been shown to disrupt promyelocitic leukemia (PML) nuclear bodies (NBs) by inducing the degradation of PML proteins, leading to impaired DNA repair and increased cell survival. Although EBNA1-mediated PML disruption is likely to be an important factor in the development of NPC, little is known about its mechanism. We now show that an interaction between EBNA1 and the host CK2 kinase is crucial for EBNA1 to disrupt PML bodies and degrade PML proteins. EBNA1 increases the association of CK2 with PML proteins, thereby increasing the phosphorylation of PML proteins by CK2, a modification that is known to trigger the polyubiquitylation and degradation of PML. The interaction between EBNA1 and CK2 is direct and occurs through the β regulatory subunit of CK2 and EBNA1 amino acids 387 to 394. The binding of EBNA1 to the host ubiquitin specific protease USP7 has also been shown to be important for EBNA1-mediated PML disruption. We show that EBNA1 also increases the occupancy of USP7 at PML NBs and that CK2 and USP7 bind independently and simultaneously to EBNA1 to form a ternary complex. The combined results indicate that EBNA1 usurps two independent cellular pathways to trigger the loss of PML NBs.
机译:潜伏的爱泼斯坦-巴尔病毒(EBV)感染是包括鼻咽癌(NPC)在内的几种癌症发展的重要原因。已显示在NPC细胞核中表达的一种EBV蛋白EBNA1通过诱导PML蛋白降解来破坏早幼粒细胞白血病(PML)核小体(NBs),从而导致DNA修复受损和细胞存活率提高。尽管EBNA1介导的PML破坏可能是NPC发生的重要因素,但对其机制知之甚少。我们现在显示,EBNA1与宿主CK2激酶之间的相互作用对于EBNA1破坏PML体并降解PML蛋白至关重要。 EBNA1增加了CK2与PML蛋白的结合,从而增加了CK2对PML蛋白的磷酸化作用,这种修饰已知会触发PML的多泛素化和降解。 EBNA1和CK2之间的相互作用是直接的,并通过CK2和EBNA1氨基酸387至394的β调节亚基发生。EBNA1与宿主泛素特异性蛋白酶USP7的结合也已证明对EBNA1介导的PML破坏很重要。我们表明,EBNA1还增加了USP7在PML NB处的占有率,并且CK2和USP7独立且同时与EBNA1结合形成三元复合物。综合结果表明,EBNA1篡改了两个独立的细胞途径来触发PML NB的丢失。

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