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首页> 外文期刊>Behavioral neuroscience >Tap withdrawal circuit interneurons require CREB for long-term habituation in Caenorhabditis elegans
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Tap withdrawal circuit interneurons require CREB for long-term habituation in Caenorhabditis elegans

机译:分枝撤回回路中枢神经元需要线虫长期适应于秀丽隐杆线虫

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摘要

We investigated the role of the Caenorhabditis elegans CREB (cAMP response element binding protein) homologue, crh-1, in response to tap (nonlocalized mechanosensory stimulation) and tap habituation. Worms with a loss-of-function mutation in crh-1 performed smaller reversals in response to tap than did wild-type worms and did not show long-term memory for spaced training 24-hr posttraining; however, they did show short-term habituation to tap stimuli when stimuli were presented at both 10-s and 60-s interstimulus intervals, and showed 12-hr intermediate memory for spaced habituation training (intermediate-term memory). Expressing CRH-1 broadly throughout the nervous system and in a subset of interneurons of the tap withdrawal circuit, but not in the mechanosensory neurons, rescued the long-term memory defects observed in crh-1 mutants. Here we show for the first time that CREB is required for long-term habituation and show that the interneurons of the tap withdrawal response circuit are the locus of plasticity for long-term mechanosensory habituation in C. elegans.
机译:我们调查了秀丽隐杆线虫CREB(cAMP反应元件结合蛋白)同源物crh-1在对敲击(非局部机械感官刺激)和敲击习惯的反应中的作用。与野生型蠕虫相比,crh-1中功能丧失突变的蠕虫对抽头的逆转效果更小,并且对于24小时训练后的间隔训练没有长期记忆。然而,当刺激在10 s和60 s的间隔内出现时,它们确实表现出了对敲击刺激的短期适应,并显示了12个小时的间隔记忆训练的中间记忆(中期记忆)。在CRH-1突变体中观察到的长期记忆缺陷挽救了在整个神经系统和抽头抽回回路的部分神经元中广泛表达的CRH-1,但在机械感觉神经元中却没有表达。在这里,我们首次展示了CREB对于长期适应是必需的,并表明抽头撤回响应回路的中间神经元是秀丽隐杆线虫长期机械感觉适应的可塑性源。

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