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Quantitative Proteomics Analysis of the Effects of Ionizing Radiation in Wild Type and p53K317R Knock-in Mouse Thymocytes

机译:蛋白质组学对野生型和p53K317R敲入小鼠胸腺细胞电离辐射影响的定量蛋白质组学分析

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摘要

The tumor suppressor protein p53 is a sequence-specific transcription factor that has crucial roles in apoptosis, cell cycle arrest, cellular senescence, and DNA repair. Following exposure to a variety of stresses, p53 becomes post-translationally modified with concomitant increases in activity and stability. To better understand the role of acetylation of Lys-317 in mouse p53, the effect of ionizing radiation (IR) on the thymocytes of p53K317R knock-in mice was studied at the global level. Using cleavable ICAT quantitative mass spectrometry, the effect of IR on protein levels in either the wild type or p53K317R thymocytes was determined. We found 102 proteins to be significantly affected by IR in the wild type thymocytes, including several whose expression has been shown to be directly regulated by p53. When the effects of IR in the wild type and p53K317R samples were compared, 46 proteins were found to be differently affected (p < 0.05). The p53K317R mutation has widespread effects on specific protein levels following IR, including the levels of proteins involved in apoptosis, transcription, and translation. Pathway analysis of the differently regulated proteins suggests an increase in p53 activity in the p53K317R thymocytes as well as a decrease in tumor necrosis factor α signaling. These results suggest that acetylation of Lys-317 modulates the functions of p53 and influences the cross-talk between the DNA damage response and other signaling pathways.
机译:肿瘤抑制蛋白p53是序列特异性转录因子,在细胞凋亡,细胞周期停滞,细胞衰老和DNA修复中具有关键作用。在暴露于各种压力后,p53会被翻译后修饰,并伴随活性和稳定性的增加。为了更好地了解Lys-317乙酰化在小鼠p53中的作用,在全球范围内研究了电离辐射(IR)对敲除p53 K317R 小鼠胸腺细胞的影响。使用可裂解的ICAT定量质谱法,测定了IR对野生型或p53 K317R 胸腺细胞蛋白质水平的影响。我们发现野生型胸腺细胞中有102种蛋白受到IR的显着影响,其中包括几种表达已直接受p53调节的蛋白。比较了IR对野生型和p53 K317R 样品的影响,发现有46种蛋白受到不同的影响(p <0.05)。 p53 K317R 突变对IR后特定蛋白水平具有广泛的影响,包括参与凋亡,转录和翻译的蛋白水平。对不同调节蛋白的通路分析表明,p53 K317R 胸腺细胞中p53活性增加,肿瘤坏死因子α信号传导减少。这些结果表明Lys-317的乙酰化调节p53的功能,并影响DNA损伤反应和其他信号通路之间的串扰。

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