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A hypothalamic novelty signal modulates hippocampal memory

机译:一个下丘脑新奇信号调制海马存储器

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摘要

The ability to recognize information that is incongruous with previous experience is critical for survival. Novelty signals have therefore evolved in the mammalian brain to enhance attention, perception and memory(1,2). Although the importance of regions such as the ventral tegmental area(3,4)and locus coeruleus(5)in broadly signalling novelty is well-established, these diffuse monoaminergic transmitters have yet to be shown to convey specific information on the type of stimuli that drive them. Whether distinct types of novelty, such as contextual and social novelty, are differently processed and routed in the brain is unknown. Here we identify the supramammillary nucleus (SuM) as a novelty hub in the hypothalamus(6). The SuM region is unique in that it not only responds broadly to novel stimuli, but also segregates and selectively routes different types of information to discrete cortical targets-the dentate gyrus and CA2 fields of the hippocampus-for the modulation of mnemonic processing. Using a new transgenic mouse line, SuM-Cre, we found that SuM neurons that project to the dentate gyrus are activated by contextual novelty, whereas the SuM-CA2 circuit is preferentially activated by novel social encounters. Circuit-based manipulation showed that divergent novelty channelling in these projections modifies hippocampal contextual or social memory. This content-specific routing of novelty signals represents a previously unknown mechanism that enables the hypothalamus to flexibly modulate select components of cognition.The supramammillary nucleus in the hypothalamus acts as a novelty hub that selectively directs different types of novelty signals to different subregions of the hippocampus and flexibly modulates the encoding of memory.
机译:识别与以前的经验不协调的信息的能力对于生存至关重要。因此,新奇信号在哺乳动物大脑中演变,以提高注意力,感知和记忆(1,2)。尽管诸如腹侧腹部面积(3,4)和基因座Coeruleus(5)的地区的重要性良好地确定,但这些漫反射单氨基能发射器尚未被证明可以传达关于刺激类型的特定信息驱动他们。无论是不同的新颖性,如上下文和社会新颖性,都在大脑中不同地处理和路由是未知的。在这里,我们将Supramillary核(总和)鉴定为下丘脑(6)中的新奇枢纽。总和区域是独特的,因为它不仅宽泛地响应了新颖的刺激,而且还响应了分离并选择性地将不同类型的信息与离散的皮质靶标 - 牙接回物和海马的CA2领域 - 用于调制助记处理。使用新的转基因小鼠线SuM-CRE,我们发现将投射到牙齿回形物的总和神经元由语境新颖性激活,而Sum-CA2电路优先被新的社会遭遇激活。基于电路的操纵表明,这些预测中的发散新颖性窜流改变了海马语境或社会记忆。这种新的新颖性信号的特定于内容的路由代表了先前未知的机制,使下丘脑能够灵活地调节认知组分。下丘脑中的Supramillary核作为新颖的集线器,可选择性地将不同类型的新奇信号指向海马的不同次区。并灵活地调制内存的编码。

著录项

  • 来源
    《Nature》 |2020年第7828期|270-274|共5页
  • 作者单位

    RIKEN Ctr Brain Sci Lab Circuit & Behav Physiol Wako Japan;

    RIKEN Ctr Brain Sci Lab Circuit & Behav Physiol Wako Japan|Univ Tokyo Grad Sch Arts & Sci Dept Life Sci Tokyo Japan;

    RIKEN Ctr Brain Sci Lab Circuit & Behav Physiol Wako Japan;

    RIKEN Ctr Brain Sci Lab Circuit & Behav Physiol Wako Japan;

    Univ Paris INSERM Inst Psychiat & Neurosci Paris UMRS1266 Paris France;

    RIKEN Ctr Brain Sci Lab Circuit & Behav Physiol Wako Japan;

    RIKEN Ctr Brain Sci Lab Circuit & Behav Physiol Wako Japan;

    RIKEN Ctr Brain Sci Lab Circuit & Behav Physiol Wako Japan;

    RIKEN Ctr Brain Sci Lab Circuit & Behav Physiol Wako Japan;

    RIKEN Ctr Brain Sci Lab Circuit & Behav Physiol Wako Japan;

    RIKEN Ctr Brain Sci Lab Circuit & Behav Physiol Wako Japan;

    RIKEN Ctr Brain Sci Lab Cell Funct & Dynam Wako Japan;

    RIKEN Ctr Brain Sci Lab Cell Funct & Dynam Wako Japan;

    Univ Paris INSERM Inst Psychiat & Neurosci Paris UMRS1266 Paris France;

    Univ Paris INSERM Inst Psychiat & Neurosci Paris UMRS1266 Paris France|GHU PARIS Psychiat & Neurosci Paris France;

    Juntendo Univ Grad Sch Med Dept Cell Biol & Neurosci Tokyo Japan;

    RIKEN Ctr Brain Sci Lab Cell Funct & Dynam Wako Japan|RIKEN Ctr Adv Photon Biotechnol Opt Res Team Wako Japan;

    Univ Paris INSERM Inst Psychiat & Neurosci Paris UMRS1266 Paris France|GHU PARIS Psychiat & Neurosci Paris France;

    RIKEN Ctr Brain Sci Lab Circuit & Behav Physiol Wako Japan|Univ Tokyo Grad Sch Arts & Sci Dept Life Sci Tokyo Japan;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-18 22:15:29

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