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记忆存储的生化机制。

Biochemical mechanisms of memory storage.

作者信息

Alkon D L, Naito S

出版信息

J Physiol (Paris). 1986;81(4):252-60.

PMID:2437294
Abstract

A series of studies on Hermissenda classical conditioning has lead to a discovery that the biophysical events (accumulation of Ca2+ and depolarization in B cell) found during memory acquisition are clearly distinct from those (suppression of K-currents, IA and ICa2+K+) detected in the retention phase of memory. Biochemical analysis of eyes isolated shortly after (a few hours) training revealed increased phosphorylation of a 20,000 M.W. protein which is very likely one of the substrates for both Ca/CaM-dependent protein kinase and C-kinase and possibly a locus of convergence for conditioned stimulus and unconditioned stimulus pathways. Furthermore, conditioning-specific changes in the two K+ currents have been reproduced by simultaneous activation of the CaM-kinase pathway (via iontophoretic injection of CaM-kinase II plus Ca2+-load or IP3 injection) and the C-kinase pathway (via bath application of phorbol-ester or diacylglycerol analog plus Ca2+-load). Therefore, synergistic interaction between the two Ca2+-dependent phosphorylation systems in the identified B cell is considered to be critically important for acquisition of associative memory. Evidence also has been obtained for similar biophysical changes and molecular mechanisms during retention of classical conditioning in the mammalian brain. Further work will be needed to uncover the biochemical mechanism(s) responsible for transforming short-term into long-lasting memory.

摘要

一系列关于海兔经典条件反射的研究有了一项发现,即在记忆形成过程中发现的生物物理事件(B细胞中Ca2+的积累和去极化)与在记忆保持阶段检测到的那些事件(K电流、IA和ICa2+K+的抑制)明显不同。对训练后不久(几小时)分离出的眼睛进行生化分析发现,一种分子量为20,000的蛋白质的磷酸化增加,这种蛋白质很可能是Ca/CaM依赖性蛋白激酶和C激酶的底物之一,并且可能是条件刺激和非条件刺激途径的一个汇聚位点。此外,通过同时激活CaM激酶途径(通过离子电泳注射CaM激酶II加Ca2+负载或IP3注射)和C激酶途径(通过浴槽应用佛波酯或二酰甘油类似物加Ca2+负载),已经重现了两种K+电流中特定于条件反射的变化。因此,在所识别的B细胞中,两个Ca2+依赖性磷酸化系统之间的协同相互作用被认为对关联记忆的形成至关重要。在哺乳动物大脑中经典条件反射的保持过程中,也获得了关于类似生物物理变化和分子机制的证据。还需要进一步的研究来揭示将短期记忆转化为长期记忆的生化机制。

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