B-50/GAP-43 phosphorylation and PKC activity are increased in rat hippocampal synaptosomal membranes after an inhibitory avoidance training

被引:58
作者
Cammarota, M
Paratcha, G
deStein, ML
Bernabeu, R
Izquierdo, I
Medina, JH
机构
[1] UNIV BUENOS AIRES,FAC MED,INST BIOL CELULAR & NEUROCIENCIAS,RA-1121 BUENOS AIRES,DF,ARGENTINA
[2] UNIV BUENOS AIRES,FCEYN,DEPT BIOL,LAB BIOL CELULAR,RA-1121 BUENOS AIRES,DF,ARGENTINA
[3] UFRGS,INST BIOCIENCIAS,CTR MEM,PORTO ALEGRE,RS,BRAZIL
关键词
B-50/GAP-43; PKC; protein phosphorylation; hippocampus; memory; learning;
D O I
10.1023/A:1027324214060
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
Several lines of evidence indicate that protein kinase C (PKC) is involved in long-term potentiation (LTP) and in certain forms of learning. Recently, we found a learning-specific, time-dependent increase in [H-3]phorbol dibutyrate binding to membrane-associated PKC in the hippocampus of rats subjected to an inhibitory avoidance task. Here we confirm and extend this observation, describing that a one trial inhibitory avoidance learning was associated with rapid and specific increases in B-50/GAP-43 phosphorylation in vitro and in PKC activity in hippocampal synaptosomal membranes. The increased phosphorylation of B-50/GAP-43 was seen at 30 min (+35% relative to naive or shocked control groups), but not at 10 or 60 min after training. This learning-associated increase in the phosphorylation of B-50/GAP-43 is mainly due to an increase in the activity of PKC. This is based on three different sets of data: 1) PKC activity increased by 24% in hippocampal synaptosomal membranes of rats sacrificed 30 min after training; 2) B-50/GAP-43 immunoblots revealed no changes in the amount of this protein among the different experimental groups; 3) phosphorylation assays, performed in the presence of bovine purified PKC or in the presence of the selective PKC inhibitor CGP 41231, exhibited no differences in B-50/GAP-43 phosphorylation between naive and trained animals. In conclusion, these results support the contention that hippocampal PKC participates in the early neural events of memory formation of an aversively-motivated learning task.
引用
收藏
页码:499 / 505
页数:7
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