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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Nonlinear decrease over time in N-acetyl aspartate levels in the absence of neuronal loss and increases in glutamine and glucose in transgenic Huntington's disease mice.
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Nonlinear decrease over time in N-acetyl aspartate levels in the absence of neuronal loss and increases in glutamine and glucose in transgenic Huntington's disease mice.

机译:在没有神经元丢失的情况下,N-乙酰天门冬氨酸水平随时间非线性降低,而在转基因亨廷顿病小鼠中谷氨酰胺和葡萄糖增加。

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摘要

Mice transgenic for exon I of mutant huntingtin, with 141 CAG repeats, exhibit a profound symptomatology characterized by weight loss, motor disorders, and early death. We performed longitudinal analysis of metabolite levels in these mice using NMR spectroscopy in vivo and in vitro. These mice exhibited a large (53%), nonlinear drop in in vivo N-acetyl aspartate (NAA) levels over time, commencing at approximately 6 weeks of age, coincident with onset of symptoms. These drops in NAA levels occurred in the absence of neuronal death as measured by postmortem Nissl staining and neuronal counting but in the presence of nuclear inclusion bodies. In addition to decreased NAA, these mice showed a large elevation of glucose in the brain (600%) consistent with a diabetic profile and elevations in blood glucose levels both before and after glucose loading. In vitro NMR analysis revealed significant increases in glutamine (100%), taurine (95%) cholines (200%), and scyllo-inositol (333%) and decreases in glutamate (24%) and succinate (47%). These results lead to two conclusions. NAA is reflective of the health of neurons and thus is a noninvasive marker, with a temporal progression similar to nuclear inclusion bodies and symptoms, of neuronal dysfunction in transgenic mice. Second, the presence of elevated glutamine is evidence of a profound metabolic defect. We present arguments that the elevated glutamine results from a decrease in neuronal-glial glutamate-glutamine cycling and a decrease in glutaminase activity.
机译:具有141个CAG重复序列的突变亨廷顿蛋白外显子I转基因小鼠表现出深刻的症状,其特征是体重减轻,运动障碍和早期死亡。我们在体内和体外使用NMR光谱法对这些小鼠的代谢产物水平进行了纵向分析。这些小鼠的体内N-乙酰天门冬氨酸(NAA)水平随时间表现出较大的(53%)非线性下降,从大约6周龄开始,与症状发作同时发生。通过死后尼氏染色和神经元计数测量,在没有神经元死亡的情况下,但在存在核包涵体的情况下,NAA水平下降。除了降低NAA外,这些小鼠还显示出大脑中葡萄糖的大量升高(600%),这与糖尿病谱和葡萄糖加载前后血糖水平的升高一致。体外NMR分析显示,谷氨酰胺(100%),牛磺酸(95%)胆碱(200%)和鲨肌醇(333%)显着增加,而谷氨酸(24%)和琥珀酸酯(47%)减少。这些结果得出两个结论。 NAA反映了神经元的健康,因此是转基因小鼠神经元功能障碍的一种非侵入性标志物,其时间进展类似于核内含物和症状。其次,谷氨酰胺升高的存在是一个严重的代谢缺陷的证据。我们提出的论点认为,谷氨酰胺升高是由于神经胶质谷氨酸-谷氨酰胺循环的减少和谷氨酰胺酶活性的降低所致。

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