CALCIUM-DEPENDENT REGULATION OF THE ENKEPHALIN PHENOTYPE BY NEURONAL-ACTIVITY DURING EARLY ONTOGENY

被引:33
作者
AGOSTON, DV
EIDEN, LE
BRENNEMAN, DE
机构
[1] NICHHD, DEV NEUROBIOL LAB, BLDG 36, RM 2A21, BETHESDA, MD 20892 USA
[2] NIMH, CELL BIOL LAB, BETHESDA, MD 20892 USA
关键词
ENKEPHALIN; SPINAL CORD; DEVELOPMENT; NEURONAL ACTIVITY; CALCIUM;
D O I
10.1002/jnr.490280115
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Genetic components of the neuronal phenotype are regulated by epigenetic factors-trophic molecules and neuronal activity-during neurodifferentiation. Developing neurons in dissociated cultures of embryonic mouse spinal cord show spontaneous electrical activity for two days with tetrodotoxin (TTX) causes virtually complete down-regulation of preproenkephalin A gene transcripts in embryonic spinal cord cultures. This TTX-induced down-regulation is fully reversed upon reinitiation of neuronal activity (removal of TTX from cultures). This reversible, tetrodotoxin-induced down-regulation of enkephalin mRNA is confined to a restricted period of early neurodevelopment (days 7 to 21 in culture). Since depolarization triggers calcium entry through voltage-activated calcium channels, we have investigated the involvement of calcium in the mechanism of this activity- and age-dependent regulation of preproenkephalin A expression. The selective activation of the L-type of voltage-sensitive calcium channels by a dihydropyridine derivative [(+) 202-791] prevented this TTX-induced down-regulation without reducing methionine enkephalin secretion. This effect was observed only when the drug was applied to electrically active cultures, prior to the addition of TTX. Simultaneous application of (+) 202-791 and TTX, or pretreatment with TTX, failed to prevent TTX-induced down-regulation. Thus, activity-dependent phenotypic plasticity of met-enkephalinergic neurons in spinal cord is: 1) maximum at an early age of neuronal development (< 10 days in culture) and becomes less apparent in old cultures (> 30 days); 2) reversible throughout; and 3) mediated by calcium entry through L-type channels.
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收藏
页码:140 / 148
页数:9
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