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首页> 外文期刊>Neurochemical Research >Myelin Lipid Abnormalities in the Aspartoacylase-Deficient Tremor Rat
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Myelin Lipid Abnormalities in the Aspartoacylase-Deficient Tremor Rat

机译:天冬氨酸酰化酶缺乏性震颤大鼠的髓磷脂血脂异常

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摘要

The high concentration of N-acetylaspartate (NAA) in neurons of the central nervous system and its growing clinical use as an indicator of neuronal viability has intensified interest in the biological function of this amino acid derivative. The biomedical relevance of such inquiries is highlighted by the myelin-associated pathology of Canavan disease, an inherited childhood disorder resulting from mutation of aspartoacylase (ASPA), the NAA-hydrolyzing enzyme. This enzyme is known to be localized in oligodendrocytes with bimodal distribution in cytosol and the myelin sheath, and to produce acetyl groups utilized in myelin lipid synthesis. Loss of this acetyl source in Canavan disease and rodent models such as the tremor rat are thought to account for the observed myelin deficit. This study was undertaken to further define and quantify the specific lipid abnormalities that occur as a result of ASPA deficit in the tremor rat. Employing mass spectrometry together with high performance thin-layer chromatography, we found that myelin from 28-day-old animals showed major reduction in cerebrosides (CB) and sulfatides (Sulf) with unsubstituted fatty acids, and equal if not greater changes in myelin from 7-month-old tremors. Cerebrosides with 2-hydroxyfatty acids showed little if any change at either age; Sulf with 2-hydroxyfatty acids showed no significant change at 28 days, but surprisingly a major increase at 7 months. Two species of phosphatidylcholine, 32:0 and 34:1, also showed significant increase, but only at 28 days. One form of phosphatidylethanolamine, PE36:1, was reduced a modest amount at both ages, whereas the plasmalogen form did not change. The dysmyelination that results from inactivation of ASPA is thus characterized by selective decreases as well as some increases in specific lipids.
机译:N-乙酰天门冬氨酸(NAA)在中枢神经系统神经元中的高浓度及其作为神经元生存能力指标的临床应用日益广泛,引起了人们对该氨基酸衍生物生物学功能的兴趣。此类查询的生物医学相关性在Canavan病的髓磷脂相关病理学中得到了强调,该病是一种遗传性的童年疾病,是由NAA水解酶天冬氨酸酰化酶(ASPA)突变引起的。已知该酶定位在少突胶质细胞中,在细胞质和髓鞘中具有双峰分布,并产生用于髓磷脂脂质合成的乙酰基。在Canavan病和啮齿动物模型(例如震颤大鼠)中这种乙酰基来源的损失被认为是所观察到的髓磷脂缺乏的原因。进行该研究以进一步定义和定量由于震颤大鼠中ASPA缺乏而发生的特定脂质异常。利用质谱和高效薄层色谱法,我们发现来自28日龄动物的髓磷脂显示出未取代脂肪酸的脑苷(CB)和硫化物(Sulf)的大量减少,并且如果没有,则来自相同部位的髓磷脂的变化也相同7个月大的震颤。带有2-羟基脂肪酸的脑苷脂在任何年龄都几乎没有变化。含2-羟基脂肪酸的硫在28天时无明显变化,但令人惊讶的是在7个月时大幅增加。两种磷脂酰胆碱,32:0和34:1,也显示出显着增加,但仅在28天时。磷脂酰乙醇胺的一种形式,PE36:1,在两个年龄段均降低了适量,而缩醛磷脂形式没有变化。因此,由ASPA失活引起的脱髓鞘作用的特征在于选择性脂质的选择性降低以及某些脂质的某些升高。

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