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STDP in a Bistable Synapse Model Based on CaMKII and Associated Signaling Pathways

机译:基于CaMKII和相关信号通路的双稳态突触模型中的STDP

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摘要

The calcium/calmodulin-dependent protein kinase II (CaMKII) plays a key role in the induction of long-term postsynaptic modifications following calcium entry. Experiments suggest that these long-term synaptic changes are all-or-none switch-like events between discrete states. The biochemical network involving CaMKII and its regulating protein signaling cascade has been hypothesized to durably maintain the evoked synaptic state in the form of a bistable switch. However, it is still unclear whether experimental LTP/LTD protocols lead to corresponding transitions between the two states in realistic models of such a network. We present a detailed biochemical model of the CaMKII autophosphorylation and the protein signaling cascade governing the CaMKII dephosphorylation. As previously shown, two stable states of the CaMKII phosphorylation level exist at resting intracellular calcium concentration, and high calcium transients can switch the system from the weakly phosphorylated (DOWN) to the highly phosphorylated (UP) state of the CaMKII (similar to a LTP event). We show here that increased CaMKII dephosphorylation activity at intermediate Ca2+ concentrations can lead to switching from the UP to the DOWN state (similar to a LTD event). This can be achieved if protein phosphatase activity promoting CaMKII dephosphorylation activates at lower Ca2+ levels than kinase activity. Finally, it is shown that the CaMKII system can qualitatively reproduce results of plasticity outcomes in response to spike-timing dependent plasticity (STDP) and presynaptic stimulation protocols. This shows that the CaMKII protein network can account for both induction, through LTP/LTD-like transitions, and storage, due to its bistability, of synaptic changes.
机译:钙/钙调蛋白依赖性蛋白激酶II(CaMKII)在钙进入后诱导长期突触后修饰中起关键作用。实验表明,这些长期的突触变化是离散状态之间的全或无开关样事件。假设涉及CaMKII及其调节蛋白信号转导级联的生化网络可以以双稳态开关的形式持久地维持诱发的突触状态。但是,尚不清楚实验性LTP / LTD协议是否会在这种网络的实际模型中导致两个状态之间的相应转换。我们提出了一个详细的生化模型的CaMKII自磷酸化和蛋白质信号级联控制CaMKII去磷酸化。如先前所示,在静止的细胞内钙浓度下,CaMKII磷酸化水平存在两个稳定状态,高钙瞬变可将系统从CaMKII的弱磷酸化(DOWN)切换到高度磷酸化(UP)状态(类似于LTP)事件)。我们在这里表明,在中等Ca2 +浓度下增加的CaMKII脱磷酸活性可以导致从UP状态切换到DOWN状态(类似于LTD事件)。如果促进蛋白质磷酸酶活性的CaMKII脱磷酸作用比激酶活性低,则Ca2 +的水平可以达到目的。最后,它表明CaMKII系统可以定性地复制可塑性结果的结果,以响应尖峰时序依赖性可塑性(STDP)和突触前刺激方案。这表明CaMKII蛋白网络既可以通过LTP / LTD样转换来诱导,又可以通过其双稳态来存储突触变化。

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