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Functional analysis of the acetylation of human p53 in DNA damage responses

机译:DNA损伤反应中人p53乙酰化的功能分析

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As a critical tumor suppressor, p53 is inactivated in human cancer cells by somatic gene mutation or disruption of pathways required for its activation. Therefore, it is critical to elucidate the mechanism underlying p53 activation after genotoxic and cellular stresses. Accumulating evidence has indicated the importance of posttranslational modifications such as acetylation in regulating p53 stability and activity. However, the physiological roles of the eight identified acetylation events in regulating p53 responses remain to be fully understood. By employing homologous recombination, we introduced various combinations of missense mutations (lysine to arginine) into eight acetylation sites of the endogenous p53 gene in human embryonic stem cells (hESCs). By determining the p53 responses to DNA damage in the p53 knock-in mutant hESCs and their derivatives, we demonstrate physiological importance of the acetylation events within the core domain (K120 and K164) and at the C-terminus (K370/372/373/381/382/386) in regulating human p53 responses to DNA damage.
机译:作为一种重要的肿瘤抑制因子,p53在人体癌细胞中通过体细胞基因突变或激活其所需途径的破坏而失活。因此,阐明遗传毒性和细胞应激后p53激活的机制至关重要。越来越多的证据表明,翻译后修饰(例如乙酰化)在调节p53稳定性和活性中的重要性。但是,八种已识别的乙酰化事件在调节p53反应中的生理作用仍有待充分了解。通过采用同源重组,我们在人胚胎干细胞(hESCs)的内源性p53基因的八个乙酰化位点中引入了多种错义突变(从赖氨酸到精氨酸)的组合。通过确定p53敲入突变型hESC及其衍生物中对DNA损伤的p53反应,我们证明了核心域(K120和K164)和C端(K370 / 372/373 / 381/382/386)来调节人类对DNA损伤的p53反应。

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