Modulation of brain gene expression during sleep and wakefulness: A review of recent findings

被引:65
作者
Tononi, G [1 ]
Cirelli, C [1 ]
机构
[1] Neurosci Inst, San Diego, CA 92121 USA
关键词
sleep deprivation; microarray; differential display;
D O I
10.1016/S0893-133X(01)00322-0
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
The characterization of the molecular correlates of sleep and wakefulness is essential to understand the restorative processes occurring during sleep and the cellular mechanisms underlying sleep regulation. In order to determine what molecular changes occur during the sleep-waking cycle, we have recently performed a systematic screening of gene expression in the brain of sleeping, sleep deprived, and spontaneously awake rates. Out of the similar to 10,000 genes screened so far, a small minority (similar to0.5%) was differentially expressed in the cerebral cortex across behavioral states. Most genes were upregulated in wakefulness and sleep deprivation relative to sleep, while only a few, were upregulated in sleep relative to wakefulness and sleep deprivation. Almost all the genes upregulated in sleep, and several genes upregulated in wakefulness and sleep deprivation, did not match any known sequence. Known genes expressed at higher levels in wakefulness and sleep deprivation could be grouped into functional categories: immediate early genes transcription factors, genes related to energy metabolism, growth factors/adhesion molecules, chaperones/heat shock proteins, vesicle and synapse-related genes, neurotransmitter/hormone receptors, neurotransmitter transporters, enzymes, and others. Although the characterization of the molecular correlates of sleep, wakefulness, and sleep deprivation is still in progress, it is already apparent that the transition from sleep to waking can affect basic cellular functions such as RNA and protein synthesis, neural plasticity, neurotransmission, and metabolism. (C) 2001 American College of Neuropsychopharmacology. Published by Elsevier Science Inc.
引用
收藏
页码:S28 / S35
页数:8
相关论文
共 23 条
[11]   Bidirectional, activity-dependent regulation of glutamate receptors in the adult hippocampus in vivo [J].
Heynen, AJ ;
Quinlan, EM ;
Bae, DC ;
Bear, MF .
NEURON, 2000, 28 (02) :527-536
[12]  
Horne J, 1988, WHY WE SLEEP FUNCTIO
[13]   Activity of serotonergic neurons in behaving animals [J].
Jacobs, BL ;
Fornal, CA .
NEUROPSYCHOPHARMACOLOGY, 1999, 21 (02) :S9-S15
[14]   LONG-TERM SENSITIZATION TRAINING IN APLYSIA LEADS TO AN INCREASE IN THE EXPRESSION OF BIP, THE MAJOR PROTEIN CHAPERON OF THE ER [J].
KUHL, D ;
KENNEDY, TE ;
BARZILAI, A ;
KANDEL, ER .
JOURNAL OF CELL BIOLOGY, 1992, 119 (05) :1069-1076
[15]   SLEEP FUNCTION(S) AND CEREBRAL METABOLISM [J].
MAQUET, P .
BEHAVIOURAL BRAIN RESEARCH, 1995, 69 (1-2) :75-83
[16]   DORSAL RAPHE NEURONS - DEPRESSION OF FIRING DURING SLEEP IN CATS [J].
MCGINTY, DJ ;
HARPER, RM .
BRAIN RESEARCH, 1976, 101 (03) :569-575
[17]   GENE-EXPRESSION IN RAT-BRAIN [J].
MILNER, RJ ;
SUTCLIFFE, JG .
NUCLEIC ACIDS RESEARCH, 1983, 11 (16) :5497-5520
[18]   IMMEDIATE-EARLY GENES IN SPONTANEOUS WAKEFULNESS AND SLEEP - EXPRESSION OF C-FOS AND NGFI-A MESSENGER-RNA AND PROTEIN [J].
POMPEIANO, M ;
CIRELLI, C ;
TONONI, G .
JOURNAL OF SLEEP RESEARCH, 1994, 3 (02) :80-96
[19]   REGIONAL METABOLIC-ACTIVITY IN THE RAT-BRAIN DURING SLEEP-WAKE ACTIVITY [J].
RAMM, P ;
FROST, BJ .
SLEEP, 1983, 6 (03) :196-216
[20]   Correlates of sleep and waking in Drosophila melanogaster [J].
Shaw, PJ ;
Cirelli, C ;
Greenspan, RJ ;
Tononi, G .
SCIENCE, 2000, 287 (5459) :1834-1837