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PKMζ Maintains Spatial Instrumental and Classically Conditioned Long-Term Memories

机译:PKMζ保持空间工具和经典条件下的长期记忆

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摘要

How long-term memories are stored is a fundamental question in neuroscience. The first molecular mechanism for long-term memory storage in the brain was recently identified as the persistent action of protein kinase Mzeta (PKMζ), an autonomously active atypical protein kinase C (PKC) isoform critical for the maintenance of long-term potentiation (LTP). PKMζ maintains aversively conditioned associations, but what general form of information the kinase encodes in the brain is unknown. We first confirmed the specificity of the action of zeta inhibitory peptide (ZIP) by disrupting long-term memory for active place avoidance with chelerythrine, a second inhibitor of PKMζ activity. We then examined, using ZIP, the effect of PKMζ inhibition in dorsal hippocampus (DH) and basolateral amygdala (BLA) on retention of 1-d-old information acquired in the radial arm maze, water maze, inhibitory avoidance, and contextual and cued fear conditioning paradigms. In the DH, PKMζ inhibition selectively disrupted retention of information for spatial reference, but not spatial working memory in the radial arm maze, and precise, but not coarse spatial information in the water maze. Thus retention of accurate spatial, but not procedural and contextual information required PKMζ activity. Similarly, PKMζ inhibition in the hippocampus did not affect contextual information after fear conditioning. In contrast, PKMζ inhibition in the BLA impaired retention of classical conditioned stimulus–unconditioned stimulus (CS-US) associations for both contextual and auditory fear, as well as instrumentally conditioned inhibitory avoidance. PKMζ inhibition had no effect on postshock freezing, indicating fear expression mediated by the BLA remained intact. Thus, persistent PKMζ activity is a general mechanism for both appetitively and aversively motivated retention of specific, accurate learned information, but is not required for processing contextual, imprecise, or procedural information.
机译:如何存储长期记忆是神经科学中的一个基本问题。最近确定了大脑中长期记忆存储的第一个分子机制是蛋白激酶Mzeta(PKMζ)的持久作用,蛋白激酶Mzeta是一种自主活性的非典型蛋白激酶C(PKC)亚型,对维持长期增强(LTP)具有至关重要的作用)。 PKMζ保持厌恶条件的关联,但激酶在大脑中编码的一般信息形式尚不清楚。我们首先通过破坏长期的记忆来避免zetaerythrine(一种PKMζ活性的第二种抑制剂)来避免主动位置,从而确定了zeta抑制肽(ZIP)作用的特异性。然后,我们使用ZIP检查了背海马(DH)和基底外侧杏仁核(BLA)中PKMζ抑制对retention臂迷宫,水迷宫,抑制回避以及上下文和提示中获取的一维信息保留的影响。恐惧调理范式。在DH中,PKMζ抑制选择性地破坏了空间参考信息的保留,但没有破坏the臂迷宫中的空间工作记忆,而破坏了水迷宫中的精确但粗糙的空间信息。因此,要保留准确的空间信息,而无需程序和上下文信息,就需要PKMζ活动。同样,恐惧调节后,海马中的PKMζ抑制也不会影响上下文信息。相比之下,BLA中的PKMζ抑制会损害经典的条件刺激与非条件刺激(CS-US)关联的保留,从而避免了背景和听觉上的恐惧,以及仪器条件下的抑制回避。 PKMζ抑制对震后冻结没有影响,表明由BLA介导的恐惧表达保持完整。因此,持久性PKMζ活动是一种可竞争性和厌恶性地保留特定,准确的学习信息的通用机制,但是处理上下文,不精确或程序性信息不是必需的。

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