首页> 美国卫生研究院文献>Journal of Virology >Adenovirus E1B 55-Kilodalton Protein Is a p53-SUMO1 E3 Ligase That Represses p53 and Stimulates Its Nuclear Export through Interactions with Promyelocytic Leukemia Nuclear Bodies
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Adenovirus E1B 55-Kilodalton Protein Is a p53-SUMO1 E3 Ligase That Represses p53 and Stimulates Its Nuclear Export through Interactions with Promyelocytic Leukemia Nuclear Bodies

机译:腺病毒E1B 55千达蛋白是一种p53-SUMO1 E3连接酶可抑制p53并通过与早幼粒细胞白血病核体相互作用来刺激其核输出。

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摘要

Oncogenic transformation by adenovirus E1A and E1B-55K requires E1B-55K inhibition of p53 activity to prevent E1A-induced apoptosis. During viral infection, E1B-55K and E4orf6 substitute for the substrate-binding subunits of the host cell cullin 5 class of ubiquitin ligases, resulting in p53 polyubiquitinylation and proteasomal degradation. Here we show that E1B-55K alone also functions as an E3 SUMO1-p53 ligase. Fluorescence microscopy studies showed that E1B-55K alone, in the absence of other viral proteins, causes p53 to colocalize with E1B-55K in promyelocytic leukemia (PML) nuclear bodies, nuclear domains with a high concentration of sumoylated proteins. Photobleaching experiments with live cells revealed that E1B-55K tethering of p53 in PML nuclear bodies decreases the in vivo nuclear mobility of p53 nearly 2 orders of magnitude. E1B-55K-induced p53 sumoylation contributes to maximal inhibition of p53 function since mutation of the major p53 sumoylation site decreases E1B-55K-induced p53 sumoylation, tethering in PML nuclear bodies, and E1B-55K inhibition of p53 activity. Mutation of the E1B-55K sumoylation site greatly inhibits E1B-55K association with PML nuclear bodies and the p53 nuclear export to cytoplasmic aggresomes observed in E1A-E1B-transformed cells. Purified E1B-55K and p53 form high-molecular-weight complexes potentially through the formation of a network of E1B-55K dimers bound to the N termini of p53 tetramers. In support of this model, a p53 mutation that prevents tetramer formation greatly reduces E1B-55K-induced tethering in PML nuclear bodies and p53 nuclear export. These data indicate that E1B-55K's association with PML nuclear bodies inactivates p53 by first sequestering it in PML nuclear bodies and then greatly facilitating its nuclear export.
机译:腺病毒E1A和E1B-55K的致癌转化需要E1B-55K抑制p53活性以阻止E1A诱导的细胞凋亡。在病毒感染期间,E1B-55K和E4orf6替代了宿主细胞cullin 5类泛素连接酶的底物结合亚基,导致p53多泛素化和蛋白酶体降解。在这里,我们显示了单独的E1B-55K也可充当E3 SUMO1-p53连接酶。荧光显微镜研究表明,在没有其他病毒蛋白的情况下,单独的E1B-55K会使p53与E1B-55K在早幼粒细胞白血病(PML)核体中共定位,该核域中含有高浓度的磺酰化蛋白。用活细胞进行的光漂白实验表明,PML在pML核体内的p53的E1B-55K系链作用将p53的体内核迁移率降低了近2个数量级。 E1B-55K诱导的p53磺酰化有助于最大程度地抑制p53功能,因为主要p53磺酰化位点的突变降低了E1B-55K诱导的p53磺酰化,PML核中的系留和E1B-55K抑制p53活性。 E1B-55K sumoylation网站的突变大大抑制了E1B-55K与PML核体的结合以及在E1A-E1B转化细胞中观察到的p53核输出到细胞质聚集体。纯化的E1B-55K和p53可能通过形成与p53四聚体N末端结合的E1B-55K二聚体网络而形成高分子量复合物。支持该模型的是,防止四聚体形成的p53突变大大减少了EML-55K诱导的PML核体内的系留和p53核输出。这些数据表明,E1B-55K与PML核机构的结合通过首先将p53螯合在PML核机构中,然后极大地促进其核出口而使p53失活。

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