突触可塑性
兴奋性突触后电位
脱磷
长时程增强
神经科学
突触后密度
突触疲劳
磷酸化
变质塑性
支架蛋白
细胞生物学
生物
突触后电位
突触增强
磷酸酶
突触裂
信号转导
神经递质
生物化学
抑制性突触后电位
中枢神经系统
受体
作者
Kevin M. Woolfrey,Mark L. Dell’Acqua
标识
DOI:10.1074/jbc.r115.657262
摘要
A central theme in nervous system function is equilibrium: synaptic strengths wax and wane, neuronal firing rates adjust up and down, and neural circuits balance excitation with inhibition. This push/pull regulatory theme carries through to the molecular level at excitatory synapses, where protein function is controlled through phosphorylation and dephosphorylation by kinases and phosphatases. However, these opposing enzymatic activities are only part of the equation as scaffolding interactions and assembly of multi-protein complexes are further required for efficient, localized synaptic signaling. This review will focus on coordination of postsynaptic serine/threonine kinase and phosphatase signaling by scaffold proteins during synaptic plasticity.
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