DAY-NIGHT VARIATIONS OF ADENOSINE AND ITS METABOLIZING ENZYMES IN THE BRAIN CORTEX OF THE RAT - POSSIBLE PHYSIOLOGICAL SIGNIFICANCE FOR THE ENERGETIC HOMEOSTASIS AND THE SLEEP-WAKE CYCLE

被引:52
作者
DESANCHEZ, VC
MUNOZ, RH
SUAREZ, J
VIDRIO, S
YANEZ, L
MUNOZ, MD
机构
[1] Departamento de Bioenergética, Instituto de Fisiología Celular, UNAM, México, D.F.
关键词
ADENOSINE; PURINE; BRAIN CORTEX; CIRCADIAN RHYTHM; SLEEP WAKE CYCLE; ENERGY;
D O I
10.1016/0006-8993(93)91651-8
中图分类号
Q189 [神经科学];
学科分类号
071006 [神经生物学];
摘要
The role of adenosine as a metabolic regulator of physiological processes in the brain was studied by measuring its concentrations and the activity of adenosine-metabolizing enzymes: 5'-nucleotidase, S-adenosylhomocysteine hydrolase, adenosine deaminase and adenosine kinase in the cerebral cortex of the rat. Other purine compounds, such as, inosine, hypoxanthine and adenine nucleotides were also studied. The purines' pattern was bimodal with high levels of adenosine, inosine and hypoxanthine during the light period reaching their peak at 12.00 h, 08.00 h and 16.00 h, respectively, and small increments during the night between 02.00 h and 04.00 h. The enzymatic activities showed, in general, an unimodal profile with low activity during the day and high activities at night. The adenine nucleotide profile showed a significant diminution between 12.00 h and 24.00 h. The high adenosine level during the day might be due to a diminution of adenine nucleotide and to the low activity of adenosine-metabolizing enzymes, suggesting an accumulation of the nucleoside. The night increase, although of less magnitude, is simultaneous to high activity of adenosine-metabolizing enzymes and could be due to an increased formation of the nucleoside. The present data and the findings from other authors strongly suggest that adenosine in the brain cortex of the rat can participate at least in two physiological processes: regulation of the sleep-wake cycle and replenishment of the adenine nucleotide pool.
引用
收藏
页码:115 / 121
页数:7
相关论文
共 70 条
[1]
ADAM H, 1965, METHOD ENZYMAT AN, P573
[2]
PURINE DENOVO SYNTHESIS IN LIVER AND DEVELOPING RAT-BRAIN, AND THE EFFECT OF SOME INHIBITORS OF PURINE NUCLEOTIDE INTERCONVERSION [J].
ALLSOP, J ;
WATTS, RWE .
ENZYME, 1983, 30 (03) :172-180
[3]
Arch J R, 1978, Essays Biochem, V14, P82
[4]
ACTIVITIES AND SOME PROPERTIES OF 5'-NUCLEOTIDASE, ADENOSINE KINASE AND ADENOSINE-DEAMINASE IN TISSUES FROM VERTEBRATES AND INVERTEBRATES IN RELATION TO CONTROL OF CONCENTRATION AND PHYSIOLOGICAL-ROLE OF ADENOSINE [J].
ARCH, JRS ;
NEWSHOLME, EA .
BIOCHEMICAL JOURNAL, 1978, 174 (03) :965-977
[5]
IDENTIFICATION OF INOSINE AND HYPOXANTHINE AS ENDOGENOUS LIGANDS FOR THE BRAIN BENZODIAZEPINE-BINDING SITES [J].
ASANO, T ;
SPECTOR, S .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1979, 76 (02) :977-981
[6]
CARDIAC NUCLEOTIDES IN HYPOXIA - POSSIBLE ROLE IN REGULATION OF CORONARY BLOOD FLOW [J].
BERNE, RM .
AMERICAN JOURNAL OF PHYSIOLOGY, 1963, 204 (02) :317-&
[7]
RELEASE OF ADENOSINE FROM ISCHEMIC BRAIN - EFFECT ON CEREBRAL VASCULAR-RESISTANCE AND INCORPORATION INTO CEREBRAL ADENINE-NUCLEOTIDES [J].
BERNE, RM ;
RUBIO, R ;
CURNISH, RR .
CIRCULATION RESEARCH, 1974, 35 (02) :262-271
[8]
IDENTIFICATION OF HYPOXANTHINE TRANSPORT AND XANTHINE-OXIDASE ACTIVITY IN BRAIN CAPILLARIES [J].
BETZ, AL .
JOURNAL OF NEUROCHEMISTRY, 1985, 44 (02) :574-579
[9]
5'-NUCLEOTIDASE IN RAT-BRAIN MYELIN [J].
CAMMER, W ;
SIROTA, SR ;
ZIMMERMAN, TR ;
NORTON, WT .
JOURNAL OF NEUROCHEMISTRY, 1980, 35 (02) :367-373
[10]
EFFECTS OF HYPOXIA AND NORMOCARBIA ON CEREBRAL BLOOD FLOW AND METABOLISM IN CONSCIOUS MAN [J].
COHEN, PJ ;
ALEXANDER, SC ;
SMITH, TC ;
REIVICH, M ;
WOLLMAN, H .
JOURNAL OF APPLIED PHYSIOLOGY, 1967, 23 (02) :183-+