Moon Nam-Sung, Di Stefano Luisa, Morris Erick J, Patel Reena, White Kristin, Dyson Nicholas J
Massachusetts General Hospital Cancer Research Center, Charlestown, Massachusetts, United States of America.
PLoS Genet. 2008 Aug 8;4(8):e1000153. doi: 10.1371/journal.pgen.1000153.
In mammalian cells, RB/E2F and p53 are intimately connected, and crosstalk between these pathways is critical for the induction of cell cycle arrest or cell death in response to cellular stresses. Here we have investigated the genetic interactions between RBF/E2F and p53 pathways during Drosophila development. Unexpectedly, we find that the pro-apoptotic activities of E2F and p53 are independent of one another when examined in the context of Drosophila development: apoptosis induced by the deregulation of dE2F1, or by the overexpression of dE2F1, is unaffected by the elimination of dp53; conversely, dp53-induced phenotypes are unaffected by the elimination of dE2F activity. However, dE2F and dp53 converge in the context of a DNA damage response. Both dE2F1/dDP and dp53 are required for DNA damage-induced cell death, and the analysis of rbf1 mutant eye discs indicates that dE2F1/dDP and dp53 cooperatively promote cell death in irradiated discs. In this context, the further deregulation in the expression of pro-apoptotic genes generates an additional sensitivity to apoptosis that requires both dE2F/dDP and dp53 activity. This sensitivity differs from DNA damage-induced apoptosis in wild-type discs (and from dE2F/dDP-induced apoptosis in un-irradiated rbf1 mutant eye discs) by being dependent on both hid and reaper. These results show that pro-apoptotic activities of dE2F1 and dp53 are surprisingly separable: dp53 is required for dE2F-dependent apoptosis in the response to DNA damage, but it is not required for dE2F-dependent apoptosis caused simply by the inactivation of rbf1.
在哺乳动物细胞中,RB/E2F和p53紧密相连,这些信号通路之间的相互作用对于细胞在应激状态下诱导细胞周期停滞或细胞死亡至关重要。在此,我们研究了果蝇发育过程中RBF/E2F和p53信号通路之间的遗传相互作用。出乎意料的是,在果蝇发育背景下研究时,我们发现E2F和p53的促凋亡活性相互独立:dE2F1失调或dE2F1过表达诱导的凋亡不受dp53缺失的影响;相反,dp53诱导的表型不受dE2F活性缺失的影响。然而,在DNA损伤反应背景下,dE2F和dp53会发生协同作用。DNA损伤诱导的细胞死亡需要dE2F1/dDP和dp53两者参与,对rbf1突变眼盘的分析表明,dE2F1/dDP和dp53在受辐射的眼盘中协同促进细胞死亡。在此背景下,促凋亡基因表达的进一步失调会产生对凋亡的额外敏感性,这需要dE2F/dDP和dp53的活性。这种敏感性不同于野生型眼盘中DNA损伤诱导的凋亡(以及未受辐射的rbf1突变眼盘中dE2F/dDP诱导的凋亡),因为它依赖于hid和reaper。这些结果表明,dE2F1和dp53的促凋亡活性惊人地可分离:dp53是DNA损伤反应中dE2F依赖性凋亡所必需的,但不是rbf1失活单纯引起的dE2F依赖性凋亡所必需的。