Becker Ivonne, Wang-Eckhardt Lihua, Eckhardt Matthias
Institute of Biochemistry and Molecular Biology, Medical Faculty, University of Bonn, Bonn, Germany.
J Inherit Metab Dis. 2024 Mar;47(2):230-243. doi: 10.1002/jimd.12693. Epub 2023 Nov 27.
Canavan disease (CD) is a leukodystrophy caused by mutations in the N-acetylaspartate (NAA) hydrolase aspartoacylase (ASPA). Inability to degrade NAA and its accumulation in the brain results in spongiform myelin degeneration. NAA is mainly synthesized by neurons, where it is also a precursor of the neuropeptide N-acetylaspartylglutamate (NAAG). Hydrolysis of this peptide by glutamate carboxypeptidases is an additional source of extracellular NAA besides the instant neuronal release of NAA. This study examines to what extent NAA released from NAAG contributes to NAA accumulation and pathogenesis in the brain of Aspa mutant mice, an established model of CD. Towards this aim, Aspa mice with additional deficiencies in NAAG synthetase genes Rimklb and/or Rimkla were generated. Loss of myelin in Aspa mice was not significantly affected by Rimkla and Rimklb deficiency and there was also no obvious change in the extent of brain vacuolation. Astrogliosis was slightly reduced in the forebrain of Rimkla and Rimklb double deficient Aspa mice. However, only minor improvements at the behavioral level were found. The brain NAA accumulation in CD mice was, however, not significantly reduced in the absence of NAAG synthesis. In summary, there was only a weak tendency towards reduced pathogenic symptoms in Aspa mice deficient in NAAG synthesis. Therefore, we conclude that NAAG metabolism has little influence on NAA accumulation in Aspa mice and development of pathological symptoms in CD.
Canavan病(CD)是一种由N-乙酰天门冬氨酸(NAA)水解酶天冬氨酸酰基转移酶(ASPA)突变引起的脑白质营养不良。无法降解NAA及其在大脑中的积累导致海绵状髓鞘变性。NAA主要由神经元合成,在神经元中它也是神经肽N-乙酰天门冬氨酰谷氨酸(NAAG)的前体。除了NAA的即时神经元释放外,谷氨酸羧肽酶对该肽的水解是细胞外NAA的另一个来源。本研究考察了从NAAG释放的NAA在多大程度上促成了Aspa突变小鼠(一种已建立的CD模型)大脑中的NAA积累和发病机制。为了实现这一目标,构建了NAAG合成酶基因Rimklb和/或Rimkla存在额外缺陷的Aspa小鼠。Rimkla和Rimklb缺陷对Aspa小鼠的髓鞘丢失没有显著影响,脑空泡化程度也没有明显变化。Rimkla和Rimklb双缺陷的Aspa小鼠前脑的星形胶质细胞增生略有减少。然而,在行为水平上仅发现了轻微改善。然而,在缺乏NAAG合成的情况下,CD小鼠大脑中的NAA积累并未显著减少。总之,在缺乏NAAG合成的Aspa小鼠中,致病症状仅呈现出微弱的减轻趋势。因此,我们得出结论,NAAG代谢对Aspa小鼠中的NAA积累和CD病理症状的发展影响很小。