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首页> 外文期刊>Neurobiology of learning and memory >Differential role of calpain-dependent protein cleavage in intermediate and long-term operant memory in Aplysia
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Differential role of calpain-dependent protein cleavage in intermediate and long-term operant memory in Aplysia

机译:Calpain依赖性蛋白质切割在Aplysia中中间和长期操作记忆中的差异作用

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摘要

In addition to protein synthesis, protein degradation or protein cleavage may be necessary for intermediate (ITM) and long-term memory (LTM) to remove molecular constraints, facilitate persistent kinase activity and modulate synaptic plasticity. Calpains, a family of conserved calcium dependent cysteine proteases, modulate synaptic function through protein cleavage. We used the marine mollusk Aplysia califomica to investigate the in vivo role of calpains during intermediate and long-term operant memory formation using the learning that food is inedible (LFI) paradigm. A single LFI training session, in which the animal associates a specific netted seaweed with the failure to swallow, generates short (30 min), intermediate (4-6 h) and long-term (24 h) memory. Using the calpain inhibitors calpeptin and MDL-28170, we found that ITM requires calpain activity for induction and consolidation similar to the previously reported requirements for persistent protein kinase C activity in intermediate-term LFI memory. The induction of LTM also required calpain activity. In contrast to ITM, calpain activity was not necessary for the molecular consolidation of LTM. Surprisingly, six hours after LFI training we found that calpain activity was necessary for LTM, although this is a time at which neither persistent PKC activity nor protein synthesis is required for the maintenance of long-term LFI memory. These results demonstrate that calpains function in multiple roles in vivo during associative memory formation. (C) 2016 Elsevier Inc. All rights reserved.
机译:除了蛋白质合成之外,中间体(ITM)和长期记忆(LTM)可能需要蛋白质降解或蛋白质切割以除去分子约束,促进持续激酶活性并调节突触可塑性。 Calpains是一个保守的钙依赖性半胱氨酸蛋白酶,通过蛋白质切割调节突触函数。我们使用海洋软体动物MOLLUSK APLYSIA CALIFOMICA来研究中间和长期操作内存在中间和长期操作记忆内存中CALPAIN的体内作用,使用该学习是不可食用的(LFI)范式。单一LFI培训课程,其中动物将特定的净净海藻与未吞咽有关,产生短(30分钟),中间(4-6小时)和长期(24小时)记忆。使用Calpain抑制剂Calpeptin和MDL-28170,我们发现ITM需要Calpain活性的诱导和整合,类似于先前报道的中期LFI记忆中持久性蛋白激酶C活性的要求。 LTM的诱导也需要CALPAIN活动。与ITM相比,LTM的分子固结是不需要CALPAIN的活性。令人惊讶的是,LFI训练后六个小时,我们发现LTM需要CALPAIN活动,尽管这是维持长期LFI记忆所需的持久性PKC活性和蛋白质合成的时间。这些结果表明,在关联记忆形成期间,在体内的多种角色中的Calpains函数。 (c)2016年Elsevier Inc.保留所有权利。

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