4.7 Article

Reduction of acetylcholine in the hippocampus of hippocampal cholinergic neurostimulating peptide precursor protein knockout mice

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SCIENTIFIC REPORTS
卷 11, 期 1, 页码 -

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NATURE PORTFOLIO
DOI: 10.1038/s41598-021-01667-8

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  1. Japan Society for the Promotion of Science [20K07891, 19K16922]
  2. Grants-in-Aid for Scientific Research [20K07891, 19K16922] Funding Source: KAKEN

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The cholinergic efferent network from the medial septal nucleus to the hippocampus is important for learning and memory processes. HCNP, a peptide involved in acetylcholine synthesis, plays a role in regulating acetylcholine release and incorporation into synaptic vesicles in the hippocampus. Knockout mice lacking HCNP-pp exhibited reduced acetylcholine release and levels of vesicular acetylcholine transporter in the hippocampus, indicating a potential role for HCNP in the cholinergic regulation of the septo-hippocampal network.
The cholinergic efferent network from the medial septal nucleus to the hippocampus plays an important role in learning and memory processes. This cholinergic projection can generate theta oscillations in the hippocampus to encode novel information. Hippocampal cholinergic neurostimulating peptide (HCNP), which induces acetylcholine (Ach) synthesis in the medial septal nuclei of an explant culture system, was purified from the soluble fraction of postnatal rat hippocampus. HCNP is processed from the N-terminal region of a 186-amino acid, 21-kDa HCNP precursor protein, also known as Raf kinase inhibitory protein and phosphatidylethanolamine-binding protein 1. Here, we confirmed direct reduction of Ach release in the hippocampus of freely moving HCNP-pp knockout mice under an arousal state by the microdialysis method. The levels of vesicular acetylcholine transporter were also decreased in the hippocampus of these mice in comparison with those in control mice, suggesting there was decreased incorporation of Ach into the synaptic vesicle. These results potently indicate that HCNP may be a cholinergic regulator in the septo-hippocampal network.

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