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Differential post-translational modification of the tumour suppressor proteins Rb and p53 modulate the rates of radiation-induced apoptosis in vivo

机译:翻译抑制肿瘤蛋白Rb和p53的差异后调节体内辐射诱导的细胞凋亡的速率。

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摘要

Ionizing radiation induces p53-dependent apoptosis in the spleen, providing a model system to study p53 regulated events in a normal cell type. We have developed an in vivo model that identifies genetic differences in the regulation of p53-mediated apoptosis and addresses whether altered post-translational events in the p53-p21/Rb axis modulate the sensitivity of cells to radiation-induced cell death in vivo. Splenocytes from mice with distinct genetic backgrounds (DBA/2 and C57BL/6) exhibit differences in the rate of apoptosis. Whilst no obvious strain differences in protein levels of Bcl-2 or the cyclin-CDKs were observed, early post-translational regulatory events in the p53-p21/Rb axis showed striking differences in the two mouse strains. Cells from C57BL/6 animals undergo more rapid apoptosis after irradiation resulting from elevated levels and rapid induction of p53, pronounced Rb-cleavage, and the absence of a sustained induction of p21. In contrast, cells from DBA/2 animals have a reduced rate of apoptosis following irradiation with elevated levels of hyperphosphorylated Rb and a sustained induction of the p21 protein that is coincident with the C-terminal phosphorylation of p53. These data suggest that quantitative differences in the level of p21 protein can affect the rate of apoptosis in vivo, consistent with the view that p21 is an anti-apoptotic effector of p53. However, striking differences in the Rb protein-caspase cleavage or hyperphosphorylation-in the same cell type, but in different genetic backgrounds, demonstrates that p53-dependent apoptosis can be modulated in vivo by genetic factors that impinge upon the pro- or anti-apoptotic potential of Rb. In addition, we show that Rb cleavage is p53-dependent and that its phosphorylation status can be uncoupled from p21 expression. This study highlights the possibility that genetic factors can be identified that affect differential sensitivity of cells to ionizing radiation in vivo.
机译:电离辐射诱导脾脏中p53依赖的细胞凋亡,为研究正常细胞类型中p53调控事件提供了模型系统。我们已经开发了一种体内模型,该模型可识别p53介导的细胞凋亡调控中的遗传差异,并解决p53-p21 / Rb轴上翻译后事件的改变是否调节细胞对体内辐射诱导的细胞死亡的敏感性。来自具有不同遗传背景(DBA / 2和C57BL / 6)的小鼠的脾细胞表现出凋亡率的差异。虽然没有观察到Bcl-2或细胞周期蛋白CDKs蛋白质水平的明显差异,但p53-p21 / Rb轴上的早期翻译后调控事件在这两个小鼠品系中显示出惊人的差异。来自C57BL / 6动物的细胞在辐射后由于p53的水平升高和快速诱导,明显的Rb裂解以及对p21的持续诱导而导致的细胞凋亡更快。相反,来自DBA / 2动物的细胞在用高水平的高磷酸化Rb照射后,凋亡率降低,并且持续诱导p21蛋白,这与p53的C端磷酸化相吻合。这些数据表明,p21蛋白水平的定量差异可影响体内细胞凋亡的速率,这与p21是p53的抗凋亡效应子的观点一致。然而,在同一细胞类型中,但在不同的遗传背景下,Rb蛋白半胱天冬酶的裂解或磷酸化水平的显着差异表明,p53依赖性细胞凋亡可以通过影响促凋亡或促凋亡的遗传因子在体内进行调节。 Rb的潜力。此外,我们显示Rb裂解是p53依赖的,其磷酸化状态可以与p21表达脱钩。这项研究强调了可以识别影响细胞对体内电离辐射的不同敏感性的遗传因素的可能性。

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