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Consolidation of long-term memory by insulin in Lymnaea is not brought about by changing the number of insulin receptors

机译:通过改变胰岛素受体的数量不能实现胰岛素在Lymnaea中巩固长期记忆的作用

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摘要

The pond snail Lymnaea stagnalis learns taste aversion and consolidates it into long-term memory (LTM). This is referred to as conditioned taste aversion (CTA). The superfusion of molluscan insulin-related peptides (MIPs) over the isolated snail brain causes a long-term enhancement of synaptic input between the cerebral giant cell and the B1 buccal motor neuron. This enhancement is hypothesized to underlie CTA. The synaptic enhancement caused by the superfusion of MIPs can be blocked by the application of human insulin receptor antibody, which recognizes the extracellular domain of human insulin receptor and acts as an antagonist even for MIP receptors. An injection of the human insulin receptor antibody into the abdominal cavity of trained snails blocks the consolidation process leading to LTM, even though the snails acquire taste aversion. Here, we examined whether or not taste-aversion training changes the mRNA expression level of MIP receptor in the snail brain and found that it does not. This result, taken together with previous findings, suggest that the MIPs’ effect on synaptic function in the snail brain is attributable to a change in the MIP concentration, and not to a change in the mRNA expression level of MIP receptor, which is thought to reflect the number of MIP receptors.
机译:池塘蜗牛Lymnaea stagnalis学习厌恶并将其整合到长期记忆(LTM)中。这被称为调节味觉厌恶(CTA)。软体动物胰岛素相关肽(MIP)在孤立的蜗牛脑上的过度融合会导致大脑巨细胞和B1颊运动神经元之间的突触输入长期增强。假设此增强功能是CTA的基础。可以通过应用人胰岛素受体抗体来阻断由MIP融合引起的突触增强,该抗体识别人胰岛素受体的胞外域,甚至可以作为MIP受体的拮抗剂。将人胰岛素受体抗体注射到经过训练的蜗牛的腹腔中会阻止导致LTM的巩固过程,即使蜗牛会产生厌恶感。在这里,我们检查了厌味训练是否会改变蜗牛大脑中MIP受体的mRNA表达水平,发现并没有。该结果与以前的发现一起表明,MIP对蜗牛脑中突触功能的影响归因于MIP浓度的变化,而不是归因于MIP受体的mRNA表达水平的变化。反映MIP受体的数量。

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