N-acetylaspartate synthase is bimodally expressed in microsomes and mitochondria of brain

被引:62
作者
Lu, ZH [1 ]
Chakraborty, G [1 ]
Ledeen, RW [1 ]
Yahya, D [1 ]
Wu, GS [1 ]
机构
[1] Univ Med & Dent New Jersey, New Jersey Med Sch, Dept Neurol & Neurosci, Newark, NJ 07103 USA
来源
MOLECULAR BRAIN RESEARCH | 2004年 / 122卷 / 01期
关键词
N-acetylaspartate; N-acetylaspartate synthase; enzyme property; myelin lipid synthesis; brain microsomes and mitochondria; multiple sclerosis;
D O I
10.1016/j.molbrainres.2003.12.002
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
N-Acetylaspartate (NAA) is an abundant amino acid derivative of the central nervous system that is localized primarily in neurons and has found widespread use in clinical NMR spectroscopy (MRS) as a non-invasive indicator of neuronal survival and/or viability. Its function, although still obscure, is thought to reflect its unusual metabolic compartmentalization wherein NAA synthase occurs in the neuron and aspartoacylase, the hydrolytic enzyme that removes the acetyl moiety, occurs in myetin and glia. The NAA synthase enzyme, acetyl-COA/L-aspartate N-acetyltransferase (ANAT), was previously shown to function in mitochondria (MIT), although other subcellular fractions were apparently not examined. In this study we confirmed its presence in MIT but also found significant activity in rat brain microsomes (MIC). The reaction mixture, consisting of [C-14]aspartate plus acetyl-CoA in Na-phosphate buffer (pH 7), gave rise to [C-14]NAA that was separated and quantified by TLC. Reaction rates were 29.0 +/- 0.46 and 6.27 +/- 0.27 nmol/h/mg for MIC and MIT, respectively. K-m values and pH optima were similar, and both fractions showed modest enhancement of ANAT activity with the detergents Triton CF-54 and CHAPS. Our tentative conclusion is that ANAT is bimodally targeted to MIT and a component of MIC-likely endoplasmic reticulum. ANAT activity increased in both MIC and MIT between 29 and 60 days of age but differed thereafter in that only MIT ANAT showed a decrease after 1 year. (C) 2004 Elsevier B.V. All rights reserved.
引用
收藏
页码:71 / 78
页数:8
相关论文
共 64 条
[11]   Inhibition of N-acetylaspartate production: Implications for H-1 MRS studies in vivo [J].
Bates, TE ;
Strangward, M ;
Keelan, J ;
Davey, GP ;
Munro, PMG ;
Clark, JB .
NEUROREPORT, 1996, 7 (08) :1397-1400
[12]   Developmental and regional distribution of aspartoacylase in rat brain tissue [J].
Bhakoo, KK ;
Craig, TJ ;
Styles, P .
JOURNAL OF NEUROCHEMISTRY, 2001, 79 (01) :211-220
[13]   In vitro expression of N-acetyl aspartate by oligodendrocytes:: Implications for proton magnetic resonance spectroscopy signal in vivo [J].
Bhakoo, KK ;
Pearce, D .
JOURNAL OF NEUROCHEMISTRY, 2000, 74 (01) :254-262
[14]   N-ACETYL-L-ASPARTIC ACID - A LITERATURE-REVIEW OF A COMPOUND PROMINENT IN H-1-NMR SPECTROSCOPIC STUDIES OF BRAIN [J].
BIRKEN, DL ;
OLDENDORF, WH .
NEUROSCIENCE AND BIOBEHAVIORAL REVIEWS, 1989, 13 (01) :23-31
[15]   N-acetylaspartate is an axon-specific marker of mature white matter in vivo: A biochemical and immunohistochemical study on the rat optic nerve [J].
Bjartmar, C ;
Battistuta, J ;
Terada, N ;
Dupree, E ;
Trapp, BD .
ANNALS OF NEUROLOGY, 2002, 51 (01) :51-58
[16]   In-vivo proton MR-spectroscopy of the human brain:: Assessment of N-acetylaspartate (NAA) reduction as a marker for neurodegeneration [J].
Block, W ;
Träber, F ;
Flacke, S ;
Jessen, F ;
Pohl, C ;
Schild, H .
AMINO ACIDS, 2002, 23 (1-3) :317-323
[17]  
BRADFORD MM, 1976, ANAL BIOCHEM, V72, P248, DOI 10.1016/0003-2697(76)90527-3
[18]   N-ACETYL-L-ASPARTATE IS A MAJOR SOURCE OF ACETYL GROUPS FOR LIPID-SYNTHESIS DURING RAT-BRAIN DEVELOPMENT [J].
BURRI, R ;
STEFFEN, C ;
HERSCHKOWITZ, N .
DEVELOPMENTAL NEUROSCIENCE, 1991, 13 (06) :403-411
[19]   Fatty acid synthesizing enzymes intrinsic to myelin [J].
Chakraborty, G ;
Ledeen, R .
MOLECULAR BRAIN RESEARCH, 2003, 112 (1-2) :46-52
[20]   Intraneuronal N-acetylaspartate supplies acetyl groups for myelin lipid synthesis:: evidence for myelin-associated aspartoacylase [J].
Chakraborty, G ;
Mekala, P ;
Yahya, D ;
Wu, GS ;
Ledeen, RW .
JOURNAL OF NEUROCHEMISTRY, 2001, 78 (04) :736-745