Champagne Claudia, Landry Marie-Claude, Gingras Marie-Claude, Lavoie Josée N
Centre de Recherche en Cancérologie de l'Université Laval, L'Hôtel-Dieu de Québec, CHUQ, Québec G1R 2J6, Canada.
J Biol Chem. 2004 Jun 11;279(24):25905-15. doi: 10.1074/jbc.M400933200. Epub 2004 Apr 7.
Adenovirus type 2 (Ad2) early region 4 ORF4 (E4orf4) triggers a major death pathway that requires its accumulation in cellular membranes and its tyrosine phosphorylation. This program is regulated by Src family kinases and triggers a potent ZVAD (benzyloxycarbonyl-VAD)- and Bcl2-resistant cell death response in human-transformed cells. How E4orf4 deregulates Src-dependent signaling is unknown. Here we provide strong evidence that a physical interaction requiring the kinase domain of Src and the arginine-rich motif of E4orf4 is involved. The Src binding domain of E4orf4 overlaps with, but is distinct from that of the Balpha subunit of protein phosphatase 2A (PP2A-Balpha) and some E4orf4 complexes contain both PP2A and Src. Functional assays using mutant E4orf4 revealed that deregulation of Src signaling, activation of the Jun kinase pathway, and cell blebbing were all critically dependent on Src binding. In contrast, PP2A-Balpha binding per se was not required to engage the Src-dependent death pathway but was more critical for triggering a distinct death activity. Both E4orf4 death activities were manifested within a given cell population, were typified by distinct morphological features, and contributed to overall cell killing, although to different extents in various cell types. We conclude that E4orf4 binding to the Src kinase domain leads to deregulation of Src signaling and plays a crucial role in induction of the cytoplasmic death pathway. Nonetheless, both Src and PP2A enzymes are critical targets of E4orf4 that likely cooperate to trigger E4orf4-induced tumor cell killing and whose relative contributions may vary in function of the cellular background.
2型腺病毒(Ad2)早期区域4开放阅读框4(E4orf4)触发一条主要的死亡途径,该途径需要其在细胞膜中的积累及其酪氨酸磷酸化。这个程序受Src家族激酶调节,并在人转化细胞中触发一种有效的ZVAD(苄氧羰基 - VAD)和Bcl2抗性细胞死亡反应。E4orf4如何解除对Src依赖性信号传导的调控尚不清楚。在这里,我们提供了强有力的证据,表明涉及一种需要Src激酶结构域和E4orf4富含精氨酸基序的物理相互作用。E4orf4的Src结合结构域与蛋白磷酸酶2A(PP2A - Balpha)的Balpha亚基的结合结构域重叠但不同,并且一些E4orf4复合物同时包含PP2A和Src。使用突变型E4orf4的功能分析表明,Src信号传导的失调、Jun激酶途径的激活和细胞起泡都严重依赖于Src结合。相比之下,参与Src依赖性死亡途径本身并不需要PP2A - Balpha结合,但对于触发一种独特的死亡活性更为关键。两种E4orf4死亡活性都在给定的细胞群体中表现出来,具有不同的形态特征,并对整体细胞杀伤有贡献,尽管在不同细胞类型中的程度不同。我们得出结论,E4orf4与Src激酶结构域的结合导致Src信号传导失调,并在诱导细胞质死亡途径中起关键作用。尽管如此,Src和PP2A酶都是E4orf4的关键靶点,它们可能协同作用触发E4orf4诱导的肿瘤细胞杀伤,并且它们的相对贡献可能因细胞背景的功能而异。