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神经元内的N-乙酰天门冬氨酸为髓磷脂脂质合成提供乙酰基团:髓磷脂相关天冬氨酸酰基转移酶的证据。

Intraneuronal N-acetylaspartate supplies acetyl groups for myelin lipid synthesis: evidence for myelin-associated aspartoacylase.

作者信息

Chakraborty G, Mekala P, Yahya D, Wu G, Ledeen R W

机构信息

Department of Neurosciences, New Jersey Medical School, Newark, New Jersey 07103, USA.

出版信息

J Neurochem. 2001 Aug;78(4):736-45. doi: 10.1046/j.1471-4159.2001.00456.x.

Abstract

Despite its growing use as a radiological indicator of neuronal viability, the biological function of N-acetylaspartate (NAA) has remained elusive. This is due in part to its unusual metabolic compartmentalization wherein the synthetic enzyme occurs in neuronal mitochondria whereas the principal metabolizing enzyme, N-acetyl-L-aspartate amidohydrolase (aspartoacylase), is located primarily in white matter elements. This study demonstrates that within white matter, aspartoacylase is an integral component of the myelin sheath where it is ideally situated to produce acetyl groups for synthesis of myelin lipids. That it functions in this manner is suggested by the fact that myelin lipids of the rat optic system are well labeled following intraocular injection of [14C-acetyl]NAA. This is attributed to uptake of radiolabeled NAA by retinal ganglion cells followed by axonal transport and transaxonal transfer of NAA into myelin, a membrane previously shown to contain many lipid synthesizing enzymes. This study identifies a group of myelin lipids that are so labeled by neuronal [14C]NAA, and demonstrates a different labeling pattern from that produced by neuronal [14C]acetate. High performance liquid chromatographic analysis of the deproteinated soluble materials from the optic system following intraocular injection of [14C]NAA revealed only the latter substance and no radiolabeled acetate, suggesting little or no hydrolysis of NAA within mature neurons of the optic system. These results suggest a rationale for the unusual compartmentalization of NAA metabolism and point to NAA as a neuronal constituent that is essential for the formation and/or maintenance of myelin. The relevance of these findings to Canavan disease is discussed.

摘要

尽管 N - 乙酰天门冬氨酸(NAA)作为神经元活力的放射学指标应用越来越广泛,但其生物学功能仍不清楚。部分原因在于其异常的代谢分隔,即合成酶存在于神经元线粒体中,而主要的代谢酶 N - 乙酰 - L - 天门冬氨酸酰胺水解酶(天冬氨酸酰基转移酶)主要位于白质成分中。本研究表明,在白质中,天冬氨酸酰基转移酶是髓鞘的一个组成部分,在那里它处于理想位置,可为髓鞘脂质合成产生乙酰基。大鼠视神经系统的髓鞘脂质在眼内注射[14C - 乙酰基]NAA 后被很好地标记,这一事实表明它以这种方式发挥作用。这归因于视网膜神经节细胞摄取放射性标记的 NAA,随后 NAA 经轴突运输并通过跨轴突转移进入髓鞘,髓鞘是一种先前已证明含有许多脂质合成酶的膜。本研究鉴定了一组被神经元[14C]NAA 如此标记的髓鞘脂质,并证明其标记模式与神经元[14C]乙酸盐产生的模式不同。眼内注射[14C]NAA 后对视神经系统脱蛋白可溶性物质的高效液相色谱分析仅显示了后一种物质,未发现放射性标记的乙酸盐,这表明在视神经系统的成熟神经元内 NAA 很少或没有水解。这些结果为 NAA 代谢的异常分隔提供了一个理论依据,并指出 NAA 是髓鞘形成和/或维持所必需的神经元成分。讨论了这些发现与卡纳万病的相关性。

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