Methylglyoxal, glyoxal, and their detoxification in Alzheimer's disease

被引:136
作者
Kuhla, B
Lüth, HJ
Haferburg, D
Boeck, K
Arendt, T
Münch, G
机构
[1] Univ Leipzig, Interdisciplinary Ctr Clin Res IZKF, Neuroimmunol Cell Biol Unit, D-04103 Leipzig, Germany
[2] Univ Leipzig, Dept Neuroanat, Paul Flechsig Inst Brain Res, D-04103 Leipzig, Germany
[3] Karl Marx Univ, Inst Biochem, D-7010 Leipzig, Germany
[4] James Cook Univ N Queensland, Comparat Genom Ctr, Townsville, Qld 4811, Australia
来源
MAILLARD REACTION: CHEMISTRY AT THE INTERFACE OF NUTRITION, AGING, AND DISEASE | 2005年 / 1043卷
关键词
glyoxalase; advanced glycation end products; methylglyoxal; glyoxal; Alzheimer's disease;
D O I
10.1196/annals.1333.026
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The accumulation of advanced glycation end products (AGES) in brains with Alzheimer's disease (AD) has been implicated in the formation of insoluble deposits such as amyloid plaques and neurofibrillary tangles. AGEs are also known to activate glia, resulting in inflammation and neuronal dysfunction. As reactive intermediates of AGE formation, neurotoxic reactive dicarbonyl compounds such as glyoxal and methylglyoxal have been identified. One of the most effective detoxification systems for methylglyoxal and glyoxal is the glutathione-dependent glyoxalase system, consisting of glyoxalase I and glyoxalase H. In this study, we have determined the methylglyoxal and glyoxal levels in the cerebrospinal fluid of AD patients compared to healthy controls. Methylglyoxal levels in AD patients were twofold higher than in controls, but this difference was not significant due to the large intergroup variations and the small sample size. However, the concentrations of both compounds were five to seven times higher in CSF than in plasma. We also investigated the glyoxalase I level in AD and healthy control brains. The number of glyoxalase Ipositive neurons were increased in AD brains compared to controls. Our findings suggest that glyoxalase I is upregulated in AD in a compensatory manner to maintain physiological methylglyoxal and glyoxal levels.
引用
收藏
页码:211 / 216
页数:6
相关论文
共 14 条
[1]   Pentosidine and Nε-(carboxymethyl)-lysine in Alzheimer's disease and vascular dementia [J].
Bär, KJ ;
Franke, S ;
Wenda, B ;
Müller, S ;
Kientsch-Engel, R ;
Stein, G ;
Sauer, H .
NEUROBIOLOGY OF AGING, 2003, 24 (02) :333-338
[2]   Role for glyoxalase I in Alzheimer's disease [J].
Chen, F ;
Wollmer, MA ;
Hoerndli, F ;
Münch, G ;
Kuhla, B ;
Rogaev, EI ;
Tsolaki, M ;
Papassotiropoulos, A ;
Götz, J .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2004, 101 (20) :7687-7692
[3]  
Kikuchi S, 1999, J NEUROSCI RES, V57, P280, DOI 10.1002/(SICI)1097-4547(19990715)57:2<280::AID-JNR14>3.3.CO
[4]  
2-L
[5]   Acrolein is increased in Alzheimer's disease brain and is toxic to primary hippocampal cultures [J].
Lovell, MA ;
Xie, CS ;
Markesbery, WR .
NEUROBIOLOGY OF AGING, 2001, 22 (02) :187-194
[6]   Age- and stage-dependent accumulation of advanced glycation end products in intracellular deposits in normal and Alzheimer's disease brains [J].
Lüth, HJ ;
Ogunlade, V ;
Kuhla, B ;
Kientsch-Engel, R ;
Stahl, P ;
Webster, J ;
Arendt, T ;
Münch, G .
CEREBRAL CORTEX, 2005, 15 (02) :211-220
[7]   Increase in three α,β-dicarbonyl compound levels in human uremic plasma:: Specific in vivo determination of intermediates in advanced Maillard reaction [J].
Odani, H ;
Shinzato, T ;
Matsumoto, Y ;
Usami, J ;
Maeda, K .
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 1999, 256 (01) :89-93
[8]   Methylglyoxal modification of protein - Chemical and immunochemical characterization of methylglyoxal-arginine adducts [J].
Oya, T ;
Hattori, N ;
Mizuno, Y ;
Miyata, S ;
Maeda, S ;
Osawa, T ;
Uchida, K .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1999, 274 (26) :18492-18502
[9]   Expression and activities of aldo-keto oxidoreductases in Alzheimer disease [J].
Picklo, MJ ;
Olson, SJ ;
Markesbery, WR ;
Montine, TJ .
JOURNAL OF NEUROPATHOLOGY AND EXPERIMENTAL NEUROLOGY, 2001, 60 (07) :686-695
[10]   Genomic sequence of human glyoxalase-I: analysis of promoter activity and its regulation [J].
Ranganathan, S ;
Ciaccio, PJ ;
Walsh, ES ;
Tew, KD .
GENE, 1999, 240 (01) :149-155