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首页> 外文期刊>PLoS Pathogens >A genome-wide screen of Epstein-Barr virus proteins that modulate host SUMOylation identifies a SUMO E3 ligase conserved in herpesviruses
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A genome-wide screen of Epstein-Barr virus proteins that modulate host SUMOylation identifies a SUMO E3 ligase conserved in herpesviruses

机译:调节宿主SUMOylation的爱泼斯坦-巴尔病毒蛋白的全基因组筛选确定了疱疹病毒中保守的SUMO E3连接酶

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Many cellular processes pertinent for viral infection are regulated by the addition of small ubiquitin-like modifiers (SUMO) to key regulatory proteins, making SUMOylation an important mechanism by which viruses can commandeer cellular pathways. Epstein-Barr virus (EBV) is a master at manipulating of cellular processes, which enables life-long infection but can also lead to the induction of a variety of EBV-associated cancers. To identify new mechanisms by which EBV proteins alter cells, we screened a library of 51 EBV proteins for global effects on cellular SUMO1 and SUMO2 modifications (SUMOylation), identifying several proteins not previously known to manipulate this pathway. One EBV protein (BRLF1) globally induced the loss of SUMOylated proteins, in a proteasome-dependent manner, as well as the loss of promeylocytic leukemia nuclear bodies. However, unlike its homologue (Rta) in Kaposi’s sarcoma associated herpesvirus, it did not appear to have ubiquitin ligase activity. In addition we identified the EBV SM protein as globally upregulating SUMOylation and showed that this activity was conserved in its homologues in herpes simplex virus 1 (HSV1 UL54/ICP27) and cytomegalovirus (CMV UL69). All three viral homologues were shown to bind SUMO and Ubc9 and to have E3 SUMO ligase activity in a purified system. These are the first SUMO E3 ligases discovered for EBV, HSV1 and CMV. Interestingly the homologues had different specificities for SUMO1 and SUMO2, with SM and UL69 preferentially binding SUMO1 and inducing SUMO1 modifications, and UL54 preferentially binding SUMO2 and inducing SUMO2 modifications. The results provide new insights into the function of this family of conserved herpesvirus proteins, and the conservation of this SUMO E3 ligase activity across diverse herpesviruses suggests the importance of this activity for herpesvirus infections.
机译:与病毒感染有关的许多细胞过程都通过在关键调节蛋白中添加小的泛素样修饰剂(SUMO)来调节,使SUMOylation成为病毒可以控制细胞途径的重要机制。爱泼斯坦-巴尔病毒(EBV)是操纵细胞过程的大师,它可以终生感染,但也可以诱导多种与EBV相关的癌症。为了确定EBV蛋白质改变细胞的新机制,我们筛选了51种EBV蛋白质文库,以研究其对细胞SUMO1和SUMO2修饰(SUMOylation)的总体影响,从而鉴定出一些以前未知的操纵该途径的蛋白质。一种EBV蛋白(BRLF1)以蛋白酶体依赖性方式整体诱导SUMO化蛋白的损失,以及早幼粒细胞白血病核体的损失。但是,与卡波西氏肉瘤相关疱疹病毒中的同系物(Rta)不同,它似乎没有泛素连接酶活性。此外,我们将EBV SM蛋白鉴定为总体上调SUMOylation,并表明该活性在单纯疱疹病毒1(HSV1 UL54 / ICP27)和巨细胞病毒(CMV UL69)的同源物中是保守的。在纯化的系统中,所有三个病毒同源物均显示出结合SUMO和Ubc9并具有E3 SUMO连接酶活性。这些是针对EBV,HSV1和CMV发现的首个SUMO E3连接酶。有趣的是,同系物对SUMO1和SUMO2具有不同的特异性,其中SM和UL69优先结合SUMO1并诱导SUMO1修饰,而UL54优先结合SUMO2并诱导SUMO2修饰。结果提供了对该保守的疱疹病毒蛋白家族功能的新见解,并且该SUMO E3连接酶活性在多种疱疹病毒之间的保守性表明该活性对于疱疹病毒感染的重要性。

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