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Plasticity of Dendritic Spines: Subcompartmentalization of Signaling

机译:树突棘的可塑性:信号亚室化。

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摘要

The ability to induce and study neuronal plasticity in single dendritic spines has greatly advanced our understanding of the signaling mechanisms that mediate long-term potentiation. It is now clear that in addition to com-partmentalization by the individual spine, subcompartmentalization of biochemical signals occurs at specialized microdomains within the spine. The spatiotemporal coordination of these complex cascades allows for the concomitant remodeling of the postsynaptic density and actin spinoskeleton and for the regulation of membrane traffic to express functional and structural plasticity. Here, we highlight recent findings in the signaling cascades at spine microdomains as well as the challenges and approaches to studying plasticity at the spine level.
机译:诱导和研究单个树突棘中神经元可塑性的能力极大地增进了我们对介导长期增强作用的信号传导机制的理解。现在清楚的是,除了单个脊柱的分隔外,生化信号的亚分隔化还发生在脊柱内的特定微区上。这些复杂的级联的时空协调允许突触后密度和肌动蛋白骨架的同时重塑,并调节膜运输以表达功能和结构可塑性。在这里,我们重点介绍了脊柱微域信号级联中的最新发现,以及研究脊柱水平可塑性的挑战和方法。

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