Araujo Felipe D, Stracker Travis H, Carson Christian T, Lee Darwin V, Weitzman Matthew D
Laboratory of Genetics, Salk Institute for Biological Studies, San Diego, CA 92186-5800, USA.
J Virol. 2005 Sep;79(17):11382-91. doi: 10.1128/JVI.79.17.11382-11391.2005.
Virus infections have dramatic effects on structural and morphological characteristics of the host cell. The gene product of open reading frame 3 in the early region 4 (E4orf3) of adenovirus serotype 5 (Ad5) is involved in efficient replication and late protein synthesis. During infection with adenovirus mutants lacking the E4 region, the viral genomic DNA is joined into concatemers by cellular DNA repair factors, and this requires the Mre11/Rad50/Nbs1 complex. Concatemer formation can be prevented by the E4orf3 protein, which causes the cellular redistribution of the Mre11 complex. Here we show that E4orf3 colocalizes with components of the Mre11 complex in nuclear tracks and also in large cytoplasmic accumulations. Rearrangement of Mre11 and Rad50 by Ad5 E4orf3 is not dependent on interactions with Nbs1 or promyelocytic leukemia protein nuclear bodies. Late in infection the cytoplasmic inclusions appear as a distinct juxtanuclear accumulation at the centrosome and this requires an intact microtubule cytoskeleton. The large cytoplasmic accumulations meet the criteria defined for aggresomes, including gamma-tubulin colocalization and formation of a surrounding vimentin cage. E4orf3 also appears to alter the solubility of the cellular Mre11 complex. These data suggest that E4orf3 can target the Mre11 complex to an aggresome and may explain how the cellular repair complex is inactivated during adenovirus infection.
病毒感染对宿主细胞的结构和形态特征具有显著影响。5型腺病毒(Ad5)早期区域4(E4)中开放阅读框3的基因产物参与高效复制和晚期蛋白质合成。在用缺乏E4区域的腺病毒突变体感染期间,病毒基因组DNA通过细胞DNA修复因子连接成串联体,这需要Mre11/Rad50/Nbs1复合物。E4orf3蛋白可阻止串联体形成,该蛋白会导致Mre11复合物在细胞内重新分布。在此我们表明,E4orf3与Mre11复合物的组分在核轨道以及大的细胞质聚集体中共同定位。Ad5 E4orf3对Mre11和Rad50的重排不依赖于与Nbs1或早幼粒细胞白血病蛋白核体的相互作用。在感染后期,细胞质内含物在中心体处表现为明显的近核聚集体,这需要完整的微管细胞骨架。大的细胞质聚集体符合为聚集体定义的标准,包括γ-微管蛋白共同定位和形成周围的波形蛋白笼。E4orf3似乎还会改变细胞Mre11复合物的溶解度。这些数据表明,E4orf3可将Mre11复合物靶向聚集体,这可能解释了腺病毒感染期间细胞修复复合物是如何失活的。