Wang Jianfeng, Matalon Reuben, Bhatia Gita, Wu Gusheng, Li Hong, Liu Tong, Lu Zi-Hua, Ledeen Robert W
Department of Neurology and Neurosciences, New Jersey Medical School, UMDNJ, Newark, New Jersey 07103, USA.
J Neurochem. 2007 Apr;101(2):448-57. doi: 10.1111/j.1471-4159.2006.04380.x. Epub 2007 Jan 24.
The growing use of N-acetylaspartate as an indicator of neuronal viability has fostered interest in the biological function(s) of this unusual amino acid derivative. In considering the various physiological roles that have been proposed for this relatively abundant molecule one is obliged to take into account its unusual metabolic compartmentalization, according to which synthesis and storage occur in the neuron and hydrolytic cleavage in the oligodendrocyte. The latter reaction, catalyzed by aspartoacylase (ASPA), produces acetyl groups plus aspartate and has been proposed to occur in both soluble and membranous subfractions of white matter. Our study supports such bimodal occurrence and we now present immunoblot, proteomic, and biochemical evidence that the membrane-bound form of ASPA is intrinsic to purified myelin membranes. This was supported by a novel TLC-based method for the assay of ASPA. That observation, together with previous demonstrations of numerous lipid-synthesizing enzymes in myelin, suggests utilization of acetyl groups liberated by myelin-localized ASPA for lipid synthesis within the myelin sheath. Such synthesis might be selective and could explain the deficit of myelin lipids in animals lacking ASPA.
将 N-乙酰天门冬氨酸用作神经元活力指标的情况日益增多,这引发了人们对这种特殊氨基酸衍生物生物学功能的兴趣。在考虑针对这种相对丰富的分子所提出的各种生理作用时,人们不得不考虑其不同寻常的代谢区室化,即其合成和储存发生在神经元中,而水解裂解发生在少突胶质细胞中。后一反应由天冬氨酸酰基转移酶(ASPA)催化,产生乙酰基和天冬氨酸,并且有人提出该反应在白质的可溶性和膜性亚组分中均会发生。我们的研究支持这种双峰分布情况,并且我们现在提供免疫印迹、蛋白质组学和生化证据,证明ASPA的膜结合形式是纯化髓磷脂膜所固有的。一种基于薄层层析的新型ASPA检测方法支持了这一点。这一观察结果,连同之前在髓磷脂中发现众多脂质合成酶的研究结果,表明髓磷脂局部的ASPA释放的乙酰基可用于髓鞘内的脂质合成。这种合成可能具有选择性,并且可以解释缺乏ASPA的动物中髓磷脂脂质的缺乏情况。