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tau 病小鼠模型中大脑精氨酸代谢的改变。

Altered brain arginine metabolism in a mouse model of tauopathy.

机构信息

Department of Anatomy, School of Biomedical Sciences, Brain Health Research Centre, University of Otago, Dunedin, New Zealand.

Brain Research New Zealand, Dunedin, New Zealand.

出版信息

Amino Acids. 2019 Mar;51(3):513-528. doi: 10.1007/s00726-018-02687-x. Epub 2019 Jan 2.

Abstract

Tauopathies consist of intracellular accumulation of hyperphosphorylated and aggregated microtubule protein tau, which remains a histopathological feature of Alzheimer's disease (AD) and frontotemporal dementia. L-Arginine is a semi-essential amino acid with a number of bioactive molecules. Its downstream metabolites putrescine, spermidine, and spermine (polyamines) are critically involved in microtubule assembly and stabilization. Recent evidence implicates altered arginine metabolism in the pathogenesis of AD. Using high-performance liquid chromatographic and mass spectrometric assays, the present study systematically determined the tissue concentrations of L-arginine and its nine downstream metabolites in the frontal cortex, hippocampus, parahippocampal region, striatum, thalamus, and cerebellum in male PS19 mice-bearing human tau P301S mutation at 4, 8, and 12-14 months of age. As compared to their wild-type littermates, PS19 mice displayed early and/or prolonged increases in L-ornithine and altered polyamine levels with age. There were also genotype- and age-related changes in L-arginine, L-citrulline, glutamine, glutamate, and γ-aminobutyric acid in a region- and/or chemical-specific manner. The results demonstrate altered brain arginine metabolism in PS19 mice with the most striking changes in L-ornithine, polyamines, and glutamate, indicating a shift of L-arginine metabolism to favor the arginase-polyamine pathway. Given the role of polyamines in maintaining microtubule stability, the functional significance of these changes remains to be explored in future research.

摘要

tau 病包括细胞内过度磷酸化和聚集的微管蛋白 tau 的积累,这仍然是阿尔茨海默病 (AD) 和额颞叶痴呆的组织病理学特征。L-精氨酸是一种半必需氨基酸,具有许多生物活性分子。其下游代谢产物腐胺、亚精胺和精胺(多胺)在微管组装和稳定中起着至关重要的作用。最近的证据表明,精氨酸代谢的改变与 AD 的发病机制有关。本研究使用高效液相色谱和质谱分析方法,系统地测定了 4、8 和 12-14 月龄雄性 PS19 携带人 tau P301S 突变的小鼠大脑前额叶皮层、海马体、旁海马区、纹状体、丘脑和小脑组织中 L-精氨酸及其 9 种下游代谢物的浓度。与野生型同窝仔相比,PS19 小鼠表现出 L-鸟氨酸的早期和/或持续增加以及多胺水平的改变,随着年龄的增长。L-精氨酸、L-瓜氨酸、谷氨酰胺、谷氨酸和γ-氨基丁酸也存在基因型和年龄相关的变化,具有区域和/或化学特异性。这些结果表明 PS19 小鼠大脑精氨酸代谢发生改变,以 L-鸟氨酸、多胺和谷氨酸的变化最为明显,表明 L-精氨酸代谢向有利于精氨酸酶-多胺途径的转变。鉴于多胺在维持微管稳定性方面的作用,这些变化的功能意义有待在未来的研究中进一步探索。

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