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EDR Peptide: Possible Mechanism of Gene Expression and Protein Synthesis Regulation Involved in the Pathogenesis of Alzheimer’s Disease

机译:EDR肽:基因表达和蛋白质合成调控的可能机制参与阿尔茨海默病的发病机制

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摘要

The EDR peptide (Glu-Asp-Arg) has been previously established to possess neuroprotective properties. It activates gene expression and synthesis of proteins, involved in maintaining the neuronal functional activity, and reduces the intensity of their apoptosis in in vitro and in vivo studies. The EDR peptide interferes with the elimination of dendritic spines in neuronal cultures obtained from mice with Alzheimer’s (AD) and Huntington’s diseases. The tripeptide promotes the activation of the antioxidant enzyme synthesis in the culture of cerebellum neurons in rats. The EDR peptide normalizes behavioral responses in animal studies and improves memory issues in elderly patients. The purpose of this review is to analyze the molecular and genetics aspects of the EDR peptide effect on gene expression and synthesis of proteins involved in the pathogenesis of AD. The EDR peptide is assumed to enter cells and bind to histone proteins and/or ribonucleic acids. Thus, the EDR peptide can change the activity of the MAPK/ERK signaling pathway, the synthesis of proapoptotic proteins (caspase-3, p53), proteins of the antioxidant system (SOD2, GPX1), transcription factors PPARA, PPARG, serotonin, calmodulin. The abovementioned signaling pathway and proteins are the components of pathogenesis in AD. The EDR peptide can be AD.
机译:先前已经建立了EDR肽(Glu-Asp-Arg)以具有神经保护性能。它激活基因表达和蛋白质的合成,参与维持神经元功能活性,并降低体外和体内研究中凋亡的强度。 EDR肽干扰了从小鼠获得的与阿尔茨海默(AD)和亨廷顿疾病获得的神经元培养中的树突刺。三肽促进大鼠小脑神经元培养中抗氧化酶合成的活化。 EDR肽将动物研究中的行为反应标准化,提高老年患者的记忆问题。本综述的目的是分析EDR肽对基因表达和蛋白质的合成参与AD的蛋白质的分子和遗传方面。假设EDR肽进入细胞并与组蛋白蛋白和/或核糖核酸结合。因此,EDR肽可以改变MAPK / ERK信号通路的活性,促凋亡蛋白的合成(Caspase-3,P53),抗氧化系统的蛋白质(SOD2,GPX1),转录因子PPARA,PPARG,血清素,钙调蛋白。上述信号通路和蛋白质是AD中发病机制的组分。 EDR肽可以是广告。

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