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首页> 外文期刊>Neurotoxicology >Alteration of intracellular structure and function of glyceraldehyde-3-phosphate dehydrogenase: a common phenotype of neurodegenerative disorders?
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Alteration of intracellular structure and function of glyceraldehyde-3-phosphate dehydrogenase: a common phenotype of neurodegenerative disorders?

机译:3磷酸甘油醛脱氢酶细胞内结构和功能的改变:神经退行性疾病的常见表型?

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Recent evidence reveals that glyceraldehyde-3-phosphate dehydrogenase (GAPDH) is not simply a classical glycolytic protein of little interest. Instead, it is a multifunctional protein with diverse cytoplasmic, membrane and nuclear activities. Significantly, each activity is separate and distinctfrom its role in energy production. Its nuclear activities include its emerging role in apoptosis especially in neuronal cells. GAPDH translocates into the nucleus during programmed cell death. Introduction of antisense GAPDH sequences reduces apoptosis and prevents its nuclear translocation. Independent analyses demonstrate that GAPDH may be involved in the cellular phenotype of age-related neurodegenerative disorders. GAPDH binds uniquely in vitro to the beta-amyloid precursor protein (betaAPP), to huntingtin as well as to other triplet repeat neuronal disorder proteins. In Parkinson's disease (PD) cells, immunofluorescent data suggests the co-l localization of GAPDH and alpha-synuclein in Lewy bodies. Drugs used to treat PD bind specifically to GAPDH. Our recent findings (Mazzola and Sirover, 2001) demonstrate a subcellular reduction in GAPDH glycolytic activity in Alzheimer's disease (AD) and in Huntington's disease (HD) cells. The latter may be due to intracellular alteration of GAPDH structure (Mazzola and Sirover 2002). We discuss the hypothesis that the intracellularformation of GAPDH: neuronal protein complexes may represent an emerging cellular phenotype of neurodegenerative disorders. The cytoplasmic binding of neuronal proteins to GAPDH could affect energy production. Nuclear interactions could affect its apoptotic activity. Other functions of this multidimensional protein may also be inhibited. Experimental paradigms to test this hypothesis are considered.
机译:最近的证据表明,3-磷酸甘油醛脱氢酶(GAPDH)不仅仅是简单的兴趣不大的经典糖酵解蛋白。相反,它是一种具有多种细胞质,膜和核活性的多功能蛋白质。值得注意的是,每项活动都与能源生产中的角色是分开的且截然不同。它的核活性包括其在凋亡中的新兴作用,尤其是在神经元细胞中。在程序性细胞死亡期间,GAPDH易位到细胞核中。反义GAPDH序列的引入减少细胞凋亡并阻止其核易位。独立分析表明,GAPDH可能与年龄相关的神经退行性疾病的细胞表型有关。 GAPDH在体外与β-淀粉样蛋白前体蛋白(betaAPP),亨廷顿蛋白以及其他三联体重复神经元疾病蛋白独特结合。在帕金森氏病(PD)细胞中,免疫荧光数据表明GAPDH和α-突触核蛋白在路易体中的co-1定位。用于治疗PD的药物与GAPDH特异性结合。我们最近的发现(Mazzola和Sirover,2001)证明了阿尔茨海默氏病(AD)和亨廷顿氏病(HD)细胞中GAPDH糖酵解活性的亚细胞减少。后者可能是由于GAPDH结构的细胞内改变(Mazzola和Sirover 2002)。我们讨论的假说,GAPDH:神经元蛋白复合物的细胞内形成可能代表神经退行性疾病的新兴细胞表型。神经元蛋白与GAPDH的胞质结合可能会影响能量产生。核相互作用可能会影响其凋亡活性。该多维蛋白质的其他功能也可能被抑制。考虑了检验该假设的实验范式。

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