Kynurenine metabolism in Alzheimer's disease

被引:194
作者
Baran, H
Jellinger, K
Deecke, L
机构
[1] Hosp Psychiat, Ludwig Boltzmann Inst Clin Neurobiol, Vienna, Austria
[2] Univ Vienna, Sch Med, Dept Neurol, Vienna, Austria
关键词
Alzheimer's disease; kynurenine; kynurenine aminotransferase; kynurenic acid; biosynthesis;
D O I
10.1007/s007020050149
中图分类号
R74 [神经病学与精神病学];
学科分类号
摘要
L-kynurenine (L-KYN) serves as a substrate for the synthesis of neurotoxic 3-OH-kynurenine (3-OH-KYN) and neuroprotective kynurenic acid (KYNA). KYNA is able to interact with ionotropic excitatory amino acid receptors that are involved in a variety of neurodegenerative disorders. The purpose of the present study was to investigate the biosynthetic machinery of KYNA in several regions of Alzheimer's disease (AD) brain. The endogenous levels of L-KYN, 3-OH-KYN and KYNA in frontal cortex, caudate nucleus, putamen, hippocampus, and cerebellum of 11 autopsy confirmed cases of AD and 13 age-matched controls were analyzed. Subsequently, the activity of two proteins responsible for the production of KYNA, kynurenine aminotransferases I and II (KAT I and KAT II), was investigated. There was a trend for a decrease of L-KYN and 3-OH-KYN in all examined regions of AD brain, as compared to controls. However, KYNA was increased significantly in the putamen and caudate nucleus of AD, by 192 and 177%, respectively. In other areas of AD brain only a minor increase of KYNA was present. Elevated KYNA in the caudate nucleus and putamen correlated with a significant increase of KAT I activities in both nuclei - 157 and 147%, respectively. A minor increase of KAT II was measured only in the caudate nucleus of AD subjects. Kinetic analysis of KAT I and II performed in the caudate nucleus of AD patients revealed a marked increase of V-max, by 207 and 274% of controls, respectively. K-m value for L-KYN using pyruvate as amino acceptor was significantly higher for KAT II (247% of controls). The present data indicate an elevated kynurenine metabolism in AD brain. A marked increase of KYNA in the caudate nucleus and putamen may compensate the hyperactivity of the striato-frontal loop in AD brains. Blockade of NMDA receptors by KYNA may be responsible for impaired memory, learning and cognition in AD patients.
引用
收藏
页码:165 / 181
页数:17
相关论文
共 86 条
[71]  
SKONG I, 1998, NEUROLOGY, V50, P966
[72]  
STONE TW, 1993, PHARMACOL REV, V45, P309
[73]   Monoaminergic neurotransmitters, their precursors and metabolites in brains of Alzheimer patients [J].
Storga, D ;
Vrecko, K ;
Birkmayer, JGD ;
Reibnegger, G .
NEUROSCIENCE LETTERS, 1996, 203 (01) :29-32
[74]   MEASUREMENT OF KYNURENIC ACID IN MAMMALIAN BRAIN EXTRACTS AND CEREBROSPINAL-FLUID BY HIGH-PERFORMANCE LIQUID-CHROMATOGRAPHY WITH FLUOROMETRIC AND COULOMETRIC ELECTRODE ARRAY DETECTION [J].
SWARTZ, KJ ;
MATSON, WR ;
MACGARVEY, U ;
RYAN, EA ;
BEAL, MF .
ANALYTICAL BIOCHEMISTRY, 1990, 185 (02) :363-376
[75]  
TAKAHASHI H, 1956, J BIOL CHEM, V223, P705
[76]   EFFECT OF AGING ON THE KINETICS OF BLOOD-BRAIN-BARRIER UPTAKE OF TRYPTOPHAN IN RATS [J].
TANG, JP ;
MELETHIL, S .
PHARMACEUTICAL RESEARCH, 1995, 12 (07) :1085-1091
[77]   PHYSICAL BASIS OF COGNITIVE ALTERATIONS IN ALZHEIMERS-DISEASE - SYNAPSE LOSS IS THE MAJOR CORRELATE OF COGNITIVE IMPAIRMENT [J].
TERRY, RD ;
MASLIAH, E ;
SALMON, DP ;
BUTTERS, N ;
DETERESA, R ;
HILL, R ;
HANSEN, LA ;
KATZMAN, R .
ANNALS OF NEUROLOGY, 1991, 30 (04) :572-580
[78]   THE NINCDS-ADRDA WORK GROUP CRITERIA FOR THE CLINICAL-DIAGNOSIS OF PROBABLE ALZHEIMERS-DISEASE - A CLINICOPATHOLOGIC STUDY OF 57 CASES [J].
TIERNEY, MC ;
FISHER, RH ;
LEWIS, AJ ;
ZORZITTO, ML ;
SNOW, WG ;
REID, DW ;
NIEUWSTRATEN, P .
NEUROLOGY, 1988, 38 (03) :359-364
[79]   INDOLEAMINE CONCENTRATIONS IN CEREBROSPINAL-FLUID FROM PATIENTS WITH ALZHEIMER-TYPE AND BINSWANGER TYPE DEMENTIAS BEFORE AND AFTER ADMINISTRATION OF CITALOPRAM, A SYNTHETIC SEROTONIN UPTAKE INHIBITOR [J].
TOHGI, H ;
ABE, T ;
TAKAHASHI, S ;
SAHEKI, M ;
KIMURA, M .
JOURNAL OF NEURAL TRANSMISSION-PARKINSONS DISEASE AND DEMENTIA SECTION, 1995, 9 (2-3) :121-131
[80]  
TOMLINSON BE, 1984, GREENFIELDS NEUROPAT, P951