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Ion channel functions in generation of neural rhythmic activity

Ion channel functions in generation of neural rhythmic activity
离子通道在神经节律活动产生中的作用
批准号:
13480277
负责人:
IMOTO Keiji
金额:
$3.78万
依托单位国家:
日本
项目类别:
Grant-in-Aid for Scientific Research (B)
财政年份:
2001
资助国家:
日本
项目状态:
已结题
起止时间:
2001 至 2002

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中文摘要
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英文摘要
We investigated functional roles of ion channels in generating basic brain rhythmic activity, through analyses of synaptic transmission and neuronal activity of spontaneously mutated or knockout mice. Mutations of the ion channels directly or indirectly affect the neuronal circuits.The N-type calcium channel knockout mice were produced. Because the N-type channel was supposed to be the main calcium channel, we expected neurological deficits. But the knockout mice were apparently normal, without visible neurological deficits. They were fertile. Detailed studies, however, revealed that the N-type knockout mice had disturbed circulatory homeostasis which is regulated by the sympathetic nervous system. They may serve as a good model for studying spontaneous hypertension.We investigated the mechanism how the mutations of the P/Q-type calcium channel lead to neurological symptoms (cerebellar ataxia, seizure of absence type) in mutant mice (tottering, leaner, and rolling). In mutant cerebellar ataxic mice, synaptic transmission from parallel fibers to Purkinje cells was impaired, and the degree of the impairment correlated with the symptom of ataxia. However, the synaptic transmission from climbing fibers to Purkinje cells was preserved, or even enhanced. These observations suggest that disturbed calcium metabolism leads to various changes in synaptic connections, and underscores the important role of calcium in the development and maintenance of neural activity.We investigated thalamo-cortical connection in tottering mice which show absence-type seizure. We found that the inhibitory input was disproportionally reduced. This input may function as feed forward inhibition system to prevent the cerebral cortex from hyperactivation.
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Akiba I, Seki T, Mori M, Iizuka M, Nishimura S, Sasaki S, Imoto K: "Stable expression and characterization of human PN1 and PN3 sodium channels"Receptors & Channels. (in press). (2003)
Akiba I、Seki T、Mori M、Iizuka M、Nishimura S、Sasaki S、Imoto K:“人 PN1 和 PN3 钠通道的稳定表达和表征”受体
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Matsushita K, Wakamori M, Rhyu I.-J, Arii T, Oda S, Mori Y, Imoto K.: "Bidirectional alterations in cerebellar synaptic transmission of tottering and rolling Ca^<2+> channel mutant mice"Journal of Neuroscience. 22. 4388-4398 (2002)
Matsushita K、Wakamori M、Ryu I.-J、Arii T、Oda S、Mori Y、Imoto K.:“摇摇欲坠和滚动 Ca^2 通道突变小鼠小脑突触传递的双向改变”神经科学杂志。
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Hara Y, Wakamori M, Ishii M, Maeno E, Nishida M, Yoshida T.Yamada H, Shimizu S, Mori E, Kudoh J, Shimizu N, Kurose H, Okada Y, Imoto K, Mori Y: "LTRPC2 Ca^<2+>-permeable channel activated by changes in redox status confers susceptibility to cell death"Mol
Hara Y、Wakamori M、Ishii M、Maeno E、Nishida M、Yoshida T.Yamada H、Shimizu S、Mori E、Kudoh J、Shimizu N、Kurose H、Okada Y、Imoto K、Mori Y:“LTRPC2 Ca^<
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Morii T, Sugimoto K, Makino K, Otsuka M, Imoto K, Mori Y: "A new fluorescent biosensor for inositol trisphosphate"Journal of American Chemical Society. 124. 1138-1139 (2002)
Morii T、Sugimoto K、Makino K、Otsuka M、Imoto K、Mori Y:“一种新型肌醇三磷酸荧光生物传感器”美国化学会杂志。
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22
    Input responsiveness of neuronal circuits and its modulation by neurotransmitters.
    Robustness of the neuronal network and its disorder
    Molecular and cellular mechanisms of defective neural network rhythm generation
    Dynamic analysis of subcellular ionic signalling in neurons
    • 批准号:
      11694332
    • 项目类别:
      Grant-in-Aid for Scientific Research (B).
    • 资助金额:
      $3.39万
    • 财政年份:
      1999
    • 负责人:
      IMOTO Keiji
    • 依托单位:
    海外基金