Johnson R A, Yurochko A D, Poma E E, Zhu L, Huang E S
J Gen Virol. 1999 May;80 ( Pt 5):1293-1303. doi: 10.1099/0022-1317-80-5-1293.
Our previous work demonstrated that following human cytomegalovirus (HCMV) infection of fibroblasts, there was a protein-protein interaction between the HCMV IE1-72 immediate-early (IE) protein and the cellular p107 protein which resulted in the alleviation of p107-mediated transcriptional repression of E2F-responsive promoters. In a further characterization of this interaction, we now show that IE1-72 binds to the N-terminal portion of p107, not the C-terminal 'pocket' region that binds E2F-4, and where a number of other viral gene products bind. Additionally, we show that exons 2 and 3 of IE1-72 are required for binding to p107. After mapping the binding domains, we next wanted to address the additional functional consequences of this interaction. It is well known that p107 can negatively regulate cell growth. To examine whether IE1-72 can also overcome this growth suppression, we transfected and infected or cotransfected various constructs into SAOS-2 cells. We showed that infection of SAOS-2 cells was capable of alleviating p107-mediated growth suppression. Additionally, we showed that IE1-72 alone is capable of overcoming p107-mediated growth arrest. Alleviation of this repression by IE1-72 is dependent on the protein-protein interaction between p107 and IE1-72 as deletion mutants of either protein which lack the identified binding domains fail to achieve this effect. These data indicate that the IE1-72 protein is capable of overcoming p107-mediated blocks in cellular proliferation, events that occur in both productive and non-productive HCMV infections.
我们之前的研究表明,在人巨细胞病毒(HCMV)感染成纤维细胞后,HCMV IE1-72 立即早期(IE)蛋白与细胞 p107 蛋白之间存在蛋白质-蛋白质相互作用,这导致 p107 介导的 E2F 反应性启动子转录抑制得到缓解。在对这种相互作用的进一步表征中,我们现在表明,IE1-72 与 p107 的 N 末端部分结合,而不是与结合 E2F-4 的 C 末端“口袋”区域结合,许多其他病毒基因产物也结合在该区域。此外,我们表明 IE1-72 的外显子 2 和 3 是与 p107 结合所必需的。在绘制了结合域之后,我们接下来想探讨这种相互作用的其他功能后果。众所周知,p107 可以负向调节细胞生长。为了研究 IE1-72 是否也能克服这种生长抑制,我们将各种构建体转染并感染或共转染到 SAOS-2 细胞中。我们表明,SAOS-2 细胞的感染能够缓解 p107 介导的生长抑制。此外,我们表明单独的 IE1-72 能够克服 p107 介导的生长停滞。IE1-72 对这种抑制的缓解取决于 p107 与 IE1-72 之间的蛋白质-蛋白质相互作用,因为缺乏已确定结合域的任何一种蛋白质的缺失突变体都无法实现这种效果。这些数据表明,IE1-72 蛋白能够克服 p107 介导的细胞增殖阻滞,这一事件发生在 productive 和 non-productive HCMV 感染中。