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首页> 外文期刊>Cell death & disease. >Conformational altered p53 affects neuronal function: relevance for the response to toxic insult and growth-associated protein 43 expression
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Conformational altered p53 affects neuronal function: relevance for the response to toxic insult and growth-associated protein 43 expression

机译:构象改变的p53影响神经元功能:对毒性损伤和生长相关蛋白43表达的反应的相关性

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摘要

The role of p53 in neurodegenerative diseases is essentially associated with neuronal death. Recently an alternative point of view is emerging, as altered p53 conformation and impaired protein function have been found in fibroblasts and blood cells derived from Alzheimer’s disease patients. Here, using stable transfected SH-SY5Y cells overexpressing APP751wt (SY5Y-APP) we demonstrated that the expression of an unfolded p53 conformation compromised neuronal functionality. In particular, these cells showed (i) augmented expression of amyloid precursor protein (APP) and its metabolites, including the C-terminal fragments C99 and C83 and β -amyloid peptide (ii) high levels of oxidative markers, such as 4-hydroxy-2-nonenal Michael-adducts and 3-nitro-tyrosine and (iii) altered p53 conformation, mainly due to nitration of its tyrosine residues. The consequences of high-unfolded p53 expression resulted in loss of p53 pro-apoptotic activity, and reduction of growth-associated protein 43 (GAP-43) mRNA and protein levels. The role of unfolded p53 in cell death resistance and lack of GAP-43 transcription was demonstrated by ZnCl 2 treatment. Zinc supplementation reverted p53 wild-type tertiary structure, increased cells sensitivity to acute cytotoxic injury and GAP-43 levels in SY5Y-APP clone.
机译:p53在神经退行性疾病中的作用基本上与神经元死亡有关。最近,出现了另一种观点,因为在阿尔茨海默氏病患者的成纤维细胞和血细胞中发现了p53构象的改变和蛋白功能受损。在这里,我们使用过表达APP751wt(SY5Y-APP)的稳定转染的SH-SY5Y细胞,我们证明了未折叠的p53构象的表达损害了神经元功能。特别是,这些细胞显示(i)淀粉样前体蛋白(APP)及其代谢产物(包括C端片段C99和C83和β-淀粉样肽)表达增强(ii)高水平的氧化标记,例如4-羟基-2-壬烯基迈克尔加合物和3-硝基酪氨酸和(iii)改变p53构象,主要是由于其酪氨酸残基的硝化。高度未折叠的p53表达的结果导致p53促凋亡活性丧失,并降低了生长相关蛋白43(GAP-43)mRNA和蛋白水平。 ZnCl 2处理证明了未折叠的p53在细胞死亡抗性和GAP-43转录缺乏中的作用。补锌可恢复p53野生型三级结构,增加细胞对急性细胞毒性损伤的敏感性,并增强SY5Y-APP克隆中的GAP-43水平。

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