Smith K, Ying B, Ball A O, Beard C W, Spindler K R
Department of Genetics, University of Georgia, Athens 30602, USA.
Virology. 1996 Oct 1;224(1):184-97. doi: 10.1006/viro.1996.0520.
We demonstrated functional associations between mouse adenovirus type 1 (MAV-1) early region 1A (E1A) protein and both the mouse retinoblastoma protein (pRb) and the mouse pRb-related protein, p107. Interactions between MAV-1 E1A and mouse pRb or mouse p107 proteins were examined in infected cell lysates using a mouse embryonic fibroblast cell line infected with wild-type and mutant MAV-1 viruses. Using a polyclonal antibody to MAV-1 E1A, exogenously added mouse pRb or mouse p107 was coimmunoprecipitated from wild-type, dIE105 (CR1 delta)-, and dIE106 (CR3 delta)-infected cell lysates. No coimmunoprecipitation was seen with cell lysates from dIE102 (CR2 delta) or pmE109, a mutant virus that produces no detectable E1A protein due to an ATG to TTG point mutation in the initiator methionine. Introduction of mouse pRb into SAOS-2 cells resulted in a flat and enlarged cell phenotype, whereas cotransfection of mouse pRb and MAV-1 E1A resulted in a significant reduction of flat cells, presumably due to E1A binding pRb. CR1 delta and CR2 delta E1A proteins were less effective at reducing the number of flat, enlarged cells induced by pRb expression than were the CR3 delta or wild-type E1A proteins. The reduced ability of these mutants to inactivate pRb relative to wild-type E1A correlated with their reduced ability to bind pRb in the in vitro coimmunoprecipitation experiments. As a measure of p107/MAV-1 E1A complex formation in MAV-1-infected cells, we used mobility shift assays to examine cell extracts for the presence of p107-containing E2F protein-DNA complexes. Mock-, dIE102-, and pmE109-infected cell extracts formed a p107-containing complex, whereas wild-type-infected cell extracts did not. Thus the formation of a p107-E2F complex in wild-type- or these mutant-infected extracts inversely correlated with the presence of E1A-p107 complexes identified in the vitro coimmunoprecipitation experiments. This is consistent with E1A-p107 complexes forming in wild-type MAV-1-infected cells.
我们证明了1型小鼠腺病毒(MAV-1)早期区域1A(E1A)蛋白与小鼠视网膜母细胞瘤蛋白(pRb)和小鼠pRb相关蛋白p107之间存在功能关联。使用感染野生型和突变型MAV-1病毒的小鼠胚胎成纤维细胞系,在感染细胞裂解物中检测MAV-1 E1A与小鼠pRb或小鼠p107蛋白之间的相互作用。使用针对MAV-1 E1A的多克隆抗体,从野生型、dIE105(CR1缺失)和dIE106(CR3缺失)感染的细胞裂解物中共同免疫沉淀外源性添加的小鼠pRb或小鼠p107。在dIE102(CR2缺失)或pmE109(一种由于起始甲硫氨酸中ATG到TTG点突变而不产生可检测到的E1A蛋白的突变病毒)感染的细胞裂解物中未观察到共同免疫沉淀。将小鼠pRb导入SAOS-2细胞导致细胞表型扁平且增大,而小鼠pRb与MAV-1 E1A共转染导致扁平细胞数量显著减少,推测是由于E1A与pRb结合。与CR3缺失或野生型E1A蛋白相比,CR1缺失和CR2缺失的E1A蛋白在减少由pRb表达诱导的扁平、增大细胞数量方面效果较差。相对于野生型E1A,这些突变体使pRb失活的能力降低与其在体外共同免疫沉淀实验中结合pRb的能力降低相关。作为MAV-1感染细胞中p107/MAV-1 E1A复合物形成的一种衡量方法,我们使用迁移率变动分析来检测细胞提取物中是否存在含p107的E2F蛋白-DNA复合物。模拟感染、dIE102感染和pmE109感染的细胞提取物形成了含p107的复合物,而野生型感染的细胞提取物则没有。因此,在野生型或这些突变体感染的提取物中p107-E2F复合物的形成与体外共同免疫沉淀实验中鉴定的E1A-p107复合物的存在呈负相关。这与在野生型MAV-1感染细胞中形成E1A-p107复合物一致。