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首页> 外文期刊>Hippocampus >Transient appearance of Ca 2+ 2+ ‐permeable AMPA AMPA receptors is crucial for the production of repetitive LTP LTP ‐induced synaptic enhancement ( RISE RISE ) in cultured hippocampal slices
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Transient appearance of Ca 2+ 2+ ‐permeable AMPA AMPA receptors is crucial for the production of repetitive LTP LTP ‐induced synaptic enhancement ( RISE RISE ) in cultured hippocampal slices

机译:Ca 2+ 2+ 2+ -Permable AMPA AMPA受体对培养的海马切片中的重复LTP LTP诱导突触增强(上升)的产生至关重要

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Abstract We have previously shown that repetitive induction of long‐term potentiation (LTP) by glutamate (100?μM, 3?min, three times at 24‐hr intervals) provoked long‐lasting synaptic enhancement accompanied by synaptogenesis in rat hippocampal slice cultures, a phenomenon termed RISE (repetitive LTP‐induced synaptic enhancement). Here, we examined the role of Ca 2+ ‐permeable (CP) AMPA receptors (AMPARs) in the establishment of RISE. We first found a component sensitive to the Joro‐spider toxin (JSTX), a blocker of CP‐AMPARs, in a field EPSP recorded from CA3‐CA1 synapses at 2–3?days after stimulation, but this component was not found for 9–10?days. We also observed that rectification of AMPAR‐mediated current appeared only 2–3?days after stimulation, using a whole‐cell patch clamp recording from CA1 pyramidal neurons. These findings indicate that CP‐AMPAR is transiently expressed in the developing phase of RISE. The blockade of CP‐AMPARs by JSTX for 24?hr at this developing phase inhibited RISE establishment, accompanied by the loss of small synapses at the ultrastructural level. These results suggest that transiently induced CP‐AMPARs play a critical role in synaptogenesis in the developing phase of long‐lasting hippocampal synaptic plasticity, RISE.
机译:摘要我们之前已经表明,通过谷氨酸(100≤μm,3Ω分钟,24小时间隔的3次)的长期增强(LTP)重复诱导,伴随着大鼠海马切片培养物中的突触突触的突触增强,升高的现象(重复LTP诱导的突触增强)。在这里,我们检查了Ca 2+ -Permable(CP)AMPA受体(AMPARS)在建立上升时的作用。我们首先发现从Ca3-CA1突触的突触突触突触的现场EPSP中,对CP-AMPAR的阻塞器,CP-AMPAR的阻挡程序敏感了一个敏感的组件,但刺激后的天数,但没有找到该组件9 -10天。我们还观察到,刺激刺激后的Ampar介导电流的整流仅在Ca1金字塔神经元的全细胞贴片钳记录后刺激后2-3天。这些发现表明CP-AMPAR在升高的发展阶段瞬时表达。 JSTX阻断CP-AMPARS在这一发展阶段的24个HR抑制了上升的建立,伴随着超微结构水平的小突触损失。这些结果表明,瞬时诱导的CP-AMPars在持久的海马突触突触塑性升高的发展阶段在突触阶段发挥着关键作用。

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