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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Metabolic clues to salubrious longevity in the brain of the longest-lived rodent: the naked mole-rat
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Metabolic clues to salubrious longevity in the brain of the longest-lived rodent: the naked mole-rat

机译:寿命最长的啮齿动物大脑中长寿的代谢线索:裸鼠

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摘要

Naked mole-rats (NMRs) are the oldest-living rodent species. Living underground in a thermally stable ecological niche, NMRs have evolvedcertain exceptional traits, resulting in sustained health spans, negligible cognitive decline, and a pronounced resistance to age-related disease. Uncovering insights into mechanisms underlying these extraordinary traits involved in successful aging may conceivably provide crucial clues to extend the human life span and health span. One of the most fundamental processes inside the cell is the production of ATP, which is an essential fuel in driving all other energy-requiring cellular activities. Not surprisingly, a prominent hallmark in age-related diseases, such as neurodegeneration and cancer, is the impairment and dysregulation of metabolic pathways. Using a two-dimensional polyacrylamide gel electrophoresis proteomics approach, alterations in expression and phosphorylation levels of metabolic proteins in the brains of NMRs, aged 2-24years, were evaluated in an age-dependent manner. We identified 13 proteins with altered levels and/or phosphorylation states that play key roles in various metabolic pathways including glycolysis, -oxidation, the malate-aspartate shuttle, the Tricarboxylic Acid Cycle (TCA) cycle, the electron transport chain, NADPH production, as well as the production of glutamate. New insights into potential pathways involved in metabolic aspects of successful aging have been obtained by the identification of key proteins through which the NMR brain responds and adapts to the aging process and how the NMR brain adapted to resist age-related degeneration.
机译:裸鼠类(NMR)是生活最久的啮齿类动物。 NMR生活在热稳定的生态环境中,具有某些特殊的特征,导致持续的健康期,可忽略的认知能力下降以及对与年龄有关的疾病的明显抵抗力。可以发现,成功衰老所涉及的这些非凡特征的潜在机制的见解可能会为延长人类寿命和健康寿命提供关键线索。细胞内最基本的过程之一是ATP的产生,ATP是驱动所有其他需要能量的细胞活动的重要燃料。毫不奇怪,与年龄相关的疾病(例如神经退行性疾病和癌症)的显着特征是代谢途径的损伤和失调。使用二维聚丙烯酰胺凝胶电泳蛋白质组学方法,以年龄依赖性方式评估了2-24岁年龄的NMR大脑中代谢蛋白的表达和磷酸化水平的变化。我们鉴定了13种具有改变水平和/或磷酸化状态的蛋白质,它们在包括糖酵解,-氧化,苹果酸-天冬氨酸穿梭,三羧酸循环(TCA)循环,电子运输链,NADPH产生在内的各种代谢途径中起关键作用,以及谷氨酸的生产。通过鉴定关键蛋白可以获得成功的衰老代谢方面涉及的潜在途径的新见解,NMR大脑通过这些关键蛋白做出反应并适应衰老过程,以及NMR大脑如何适应抗衰老相关的变性。

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