Disorders of glutamate metabolism

被引:82
作者
Kelly, A [1 ]
Stanley, CA [1 ]
机构
[1] Univ Penn, Sch Med, Childrens Hosp Philadelphia, Dept Pediat,Div Endocrinol, Philadelphia, PA 19104 USA
来源
MENTAL RETARDATION AND DEVELOPMENTAL DISABILITIES RESEARCH REVIEWS | 2001年 / 7卷 / 04期
关键词
hypoglycemia; hyperammonemia; glutamate dehydrogenase; nesidioblastosis; seizure disorders;
D O I
10.1002/mrdd.1040
中图分类号
R74 [神经病学与精神病学];
学科分类号
摘要
The significant role the amino acid glutamate assumes in a number of fundamental metabolic pathways is becoming better understood. As a central junction for interchange of amino nitrogen, glutamate facilitates both amino acid synthesis and degradation. In the liver, glutamate is the terminus for release of ammonia from amino acids, and the intrahepatic concentration of glutamate modulates the rate of ammonia detoxification into urea. In pancreatic beta -cells, oxidation of glutamate mediates amino acid-stimulated insulin secretion. In the central nervous system, glutamate serves as an excitatory neurotransmittor. Glutamate is also the precursor of the inhibitory neurotransmittor GABA, as well as glutamine, a potential mediator of hyperammonemic neurotoxicity. The recent identification of a novel form of congenital hyperinsulinism associated with asymptomatic hyperammonemia assigns glutamate oxidation by glutamate dehydrogenase a more important role than previously recognized in beta -cell insulin secretion and hepatic and CNS ammonia detoxification. Disruptions of glutamate metabolism have been implicated in other clinical disorders, such as pyridoxine-dependent seizures, confirming the importance of intact glutamate metabolism. This article will review glutamate metabolism and clinical disorders associated with disrupted glutamate metabolism. (C) 2001 Wiley-Liss, Inc.
引用
收藏
页码:287 / 295
页数:9
相关论文
共 83 条
[1]
Anderson CM, 2000, GLIA, V32, P1
[2]
N-ACETYLGLUTAMATE SYNTHETASE DEFICIENCY, A 2ND PATIENT [J].
BACHMANN, C ;
BRANDIS, M ;
WEISSENBARTHRIEDEL, E ;
BURGHARD, R ;
COLOMBO, JP .
JOURNAL OF INHERITED METABOLIC DISEASE, 1988, 11 (02) :191-193
[3]
BACHMANN C, 1982, ADV EXP MED BIOL, V153, P39
[4]
BAUMEISTER FAM, 1994, PEDIATRICS, V94, P318
[5]
A mass isotopomer study of urea and glutamine synthesis from N-15-labeled ammonia in the perfused rat liver [J].
Brosnan, JT ;
Brosnan, ME ;
Charron, R ;
Nissim, I .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1996, 271 (27) :16199-16207
[6]
Brusilow S. W., 1995, METABOLIC MOL BASES, V1, P1187
[7]
Identification of a peptide of the guanosine triphosphate binding site within brain glutamate dehydrogenase isoproteins using 8-azidoguanosine triphosphate [J].
Cho, SW ;
Ahn, JY ;
Lee, J ;
Choi, SY .
BIOCHEMISTRY, 1996, 35 (44) :13907-13913
[8]
MULTIPLE SYSTEM DEGENERATION WITH GLUTAMATE-DEHYDROGENASE DEFICIENCY - PATHOLOGY AND BIOCHEMISTRY [J].
CHOKROVERTY, S ;
NICKLAS, W ;
MILLER, DC ;
GOLDBERG, J ;
CHOE, J ;
BANNER, C ;
THOMAS, J ;
DUVOISIN, R .
JOURNAL OF NEUROLOGY NEUROSURGERY AND PSYCHIATRY, 1990, 53 (12) :1099-1101
[9]
FAMILIAL HYPOGLYCEMIA PRECIPITATED BY AMINO ACIDS [J].
COCHRANE, WA ;
PAYNE, WW ;
SIMPKISS, MJ ;
WOOLF, LI .
JOURNAL OF CLINICAL INVESTIGATION, 1956, 35 (04) :411-422
[10]
COOPER AJ, 1988, J BIOL CHEM, V262, P1073