Molecular Neurogenetic studies on thermosensation ane temperature memory formatio
Molecular Neurogenetic studies on thermosensation ane temperature memory formatio
批准号:
10440227
负责人:
MORI Ikue
金额:
$8.7万
依托单位:
依托单位国家:
日本
项目类别:
Grant-in-Aid for Scientific Research (B)
财政年份:
1998
资助国家:
日本
项目状态:
已结题
起止时间:
1998 至 2000
中文摘要
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英文摘要
In collaboration with Nef lab, we show that the neuron-specific calcium sensor NCS-1, a highly conserved protein through evolution, is essential for thermotaxis. ncs-1 knockout animals show strong defects in ; isothermoal tracking. The knockout phenotype can be rescued by re-introducing wild-type NCS-1 into the AIY interneuron, a key component of the thermotaxis network. A loss of function form of NCS-1 : unable to bind calcium does not restore thermotaxis, whereas overexpression of NCS-1 enhances isothermal tracking behavior. Thus, proper calcium signaling via the calcium sensor NCS-1 defines a novel pathway that is essential for associative learning and memory in C. elegans. ttx-1 mutants show cryophylic phenotype. In collaboration with Sengupta lab, we show that ttx-1 encodes a member of the highly conserved OTX/OTD homeodomain protein family, and is expressed in the AFD neurons. Misexpression of ttx-1 is sufficient to convert other sensory neurons to AFD-like fate. C. elegans animals bearing a loss-of-function mutation in TAX-6, a calcineurin A subunit, exhibit pleiotropic abnormalities including many aberrant sensory behaviors. The tax-6 mutant defect in thermosensation is consistent with hyperactivation of the AFD thermosensory neurons. Conversely, constitutive activation of TAX-6 causes a behavioral phenotype consistent with inactivation of AFD neurons. In olfactory neurons, the impaired olfactory response of tax-6 mutants to an AWC-sensed odorant is caused by hyper-adaptation, which is suppres'sible by a mutation causing defective olfactory adaptation. Taken together, our results suggest that stimulus-evoked calcium entry activates calcineurin, which in turn negatively regulates multiple aspects of sensory signaling.
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Satterlee, J. S., Sasakura, H., Kuhara, A., Berkeley, M. <Mori. I.>________- and Sengupta, P.: "Specification of thermosensory neuron fate in C. elegans requires ttx-1, a Homolog of otd/Otx"Neuron. 31. 943-956 (2001)
Satterlee, J. S.、Sasakura, H.、Kuhara, A.、Berkeley, M. <森。
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Gomez, M., Mori, I 他7名: "Ca^<2+> signaling via the neuronal calcium sensor-1 regulates associative learning and memory in C.elegans"Neuron. 30. 241-248 (2001)
Gomez, M.、Mori, I 和其他 7 人:“Ca^<2+> 信号通过神经元钙传感器-1 调节线虫的联想学习和记忆”Neuron。
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Komatsu, H., Jin, Y.-H., L'Etoile, N., <Mori. I.>________-, Bargmann, C.I., Akaike, N. and Ohshima, Y: "Functional reconstitution of alpha and beta subunits of the C. elegans cyclic nucleotide-gated channels."Brain Research. 821. 160-168 (1999)
小松,H.,金,Y.-H.,LEtoile,N.,<森。
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木村幸太郎,森郁恵: "線虫C.elegans"GFPとバイオイメージング(実験医学 別冊). 12 (2000)
Kotaro Kimura、Ikue Mori:“线虫”GFP 和生物成像(实验医学特别版)12 (2000)。
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共 15 条
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Molecular mechanism of neural functions underlying sensory behaviors in the nematode C.elegans
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Analysis of the tax-4 gene encoding a cyclic nucleotidegated channel in C.elegans
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项目类别:Grant-in-Aid for Scientific Research (C)
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财政年份:1995
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负责人:MORI Ikue
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依托单位:
海外基金