Synaptically released zinc gates long-term potentiation in fear conditioning pathways
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作者:
Kodirov, Sodikdjon A.
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机构:Columbia Univ, Howard Hughes Med Inst, Ctr Neurobiol & Behav, New York, NY 10032 USA
Kodirov, Sodikdjon A.
Takizawa, Shuichi
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机构:Columbia Univ, Howard Hughes Med Inst, Ctr Neurobiol & Behav, New York, NY 10032 USA
Takizawa, Shuichi
Joseph, Jamie
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机构:Columbia Univ, Howard Hughes Med Inst, Ctr Neurobiol & Behav, New York, NY 10032 USA
Joseph, Jamie
Kandel, Eric R.
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Columbia Univ, Howard Hughes Med Inst, Ctr Neurobiol & Behav, New York, NY 10032 USAColumbia Univ, Howard Hughes Med Inst, Ctr Neurobiol & Behav, New York, NY 10032 USA
Kandel, Eric R.
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Shumyatsky, Gleb P.
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机构:Columbia Univ, Howard Hughes Med Inst, Ctr Neurobiol & Behav, New York, NY 10032 USA
Shumyatsky, Gleb P.
Bolshakov, Vadim Y.
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机构:Columbia Univ, Howard Hughes Med Inst, Ctr Neurobiol & Behav, New York, NY 10032 USA
Bolshakov, Vadim Y.
机构:
[1] Columbia Univ, Howard Hughes Med Inst, Ctr Neurobiol & Behav, New York, NY 10032 USA
[2] Rutgers State Univ, Dept Genet, Piscataway, NJ 08854 USA
[3] Harvard Univ, McLean Hosp, Sch Med, Dept Psychiat, Belmont, MA 02178 USA
The functional role of releasable Zn2+ in the central nervous system remains unknown. Here we show that zinc transporter 3 (ZnT-3), which maintains a high concentration of Zn2+ in synaptic vesicles and serves as a marker for zinc-containing neurons, is enriched in the lateral nucleus of the amygdala and in the temporal area 3 of the auditory cortex, an area that conveys information about the auditory conditioned stimulus to the lateral nucleus of the amygdala, but not in other conditioned stimulus areas located in the auditory thalamus. Using whole-cell recordings from am amygdala slices, we demonstrated that activity-dependent release of chelatable Zn2+ is required for the induction of spike timing-dependent long-term potentiation in cortical input to the amygdala implicated in fear learning. Our data indicate that synaptically released Zn2+ enables long-term potentiation at the cortico-amygdala synapses by depressing feed-forward GABAergic inhibition of principal neurons. This regulatory mechanism, implicating pathway-dependent release of Zr2+, may serve an essential control function in assuring spatial specificity of long-lasting synaptic modifications in the neural circuit of a learned behavior.
机构:
NYU, Ctr Neural Sci, New York, NY 10003 USANYU, Ctr Neural Sci, New York, NY 10003 USA
Lazzaro, Stephanie C.
Hou, Mian
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NYU, Ctr Neural Sci, New York, NY 10003 USANYU, Ctr Neural Sci, New York, NY 10003 USA
Hou, Mian
Cunha, Catarina
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NYU, Ctr Neural Sci, New York, NY 10003 USANYU, Ctr Neural Sci, New York, NY 10003 USA
Cunha, Catarina
LeDoux, Joseph E.
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NYU, Ctr Neural Sci, New York, NY 10003 USA
NYU, Dept Child & Adolescent Psychiat, New York, NY 10003 USA
Nathan S Kline Inst Psychiat Res, Emot Brain Inst, Orangeburg, NY 10962 USANYU, Ctr Neural Sci, New York, NY 10003 USA
LeDoux, Joseph E.
Cain, Christopher K.
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机构:
NYU, Ctr Neural Sci, New York, NY 10003 USA
Nathan S Kline Inst Psychiat Res, Emot Brain Inst, Orangeburg, NY 10962 USANYU, Ctr Neural Sci, New York, NY 10003 USA