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Coordinated activation of distinct Ca2+ sources and metabotropic glutamate receptors encodes Hebbian synaptic plasticity

机译:独特的Ca2 +来源和代谢型谷氨酸受体的协同激活编码Hebbian突触可塑性。

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摘要

At glutamatergic synapses, induction of associative synaptic plasticity requires time-correlated presynaptic and postsynaptic spikes to activate postsynaptic NMDA receptors (NMDARs). The magnitudes of the ensuing Ca2+ transients within dendritic spines are thought to determine the amplitude and direction of synaptic change. In contrast, we show that at mature hippocampal Schaffer collateral synapses the magnitudes of Ca2+ transients during plasticity induction do not match this rule. Indeed, LTP induced by time-correlated pre- and postsynaptic spikes instead requires the sequential activation of NMDARs followed by voltage-sensitive Ca2+ channels within dendritic spines. Furthermore, LTP requires inhibition of SK channels by mGluR1, which removes a negative feedback loop that constitutively regulates NMDARs. Therefore, rather than being controlled simply by the magnitude of the postsynaptic calcium rise, LTP induction requires the coordinated activation of distinct sources of Ca2+ and mGluR1-dependent facilitation of NMDAR function.
机译:在谷氨酸能突触中,诱导相关的突触可塑性需要与时间相关的突触前突触和突触后突峰,以激活突触后NMDA受体(NMDAR)。树突棘内随后的Ca 2 + 瞬变的大小被认为决定了突触变化的幅度和方向。相反,我们表明,在可塑性诱导过程中,成熟的海马Schaffer侧支突触中Ca 2 + 瞬变的幅度不符合该规则。实际上,由时间相关的突触前和突触后尖峰诱导的LTP要求依次激活NMDAR,并随后激活树突棘内的电压敏感Ca 2 + 通道。此外,LTP要求通过mGluR1抑制SK通道,从而消除了负反馈回路,该回路构成性地调节NMDAR。因此,LTP诱导不仅需要由突触后钙升高的幅度简单地控制,还需要协调地激活不同来源的Ca 2 + 和依赖于mGluR1的NMDAR功能的协同激活。

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