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Rapid and reversible formation of spine head filopodia in response to muscarinic receptor activation in CA1 pyramidal cells

机译:快速和可逆的脊柱头丝状伪足的形成响应CA1锥体细胞中毒蕈碱受体的活化

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摘要

Non-technical summaryChanges in the shape and number of spines on neuronal dendrites modify synaptic transmission and circuit properties, processes considered important for learning and memory. We show, in hippocampal pyramidal neurons, that brief activation of acetylcholine receptors of the muscarinic subtype induces the emergence of fine filopodia from spine heads in all CA1 pyramidal neurons examined. Experiments to test whether changes in the cytoskeleton play a role in the emergence of filopodia revealed that the extension of microtubules, but not actin polymerization, was necessary. These findings reveal a new form of structural plasticity at the subspine level where the heads of mature dendritic spines can modulate the degree of interaction with their presynaptic partners. Knowledge of how the cholinergic system in the brain affects spine morphology and physiology is important for understanding memory formation.
机译:非技术总结神经元树突棘的形状和数量的变化会改变突触传递和电路特性,这些过程被认为对学习和记忆很重要。我们显示,在海马锥体神经元中,毒蕈碱型亚型的乙酰胆碱受体的短暂激活会在所有检查的CA1锥体神经元中引起来自脊柱头的细丝状伪足的出现。测试细胞骨架的变化是否在丝状伪足出现中起作用的实验表明,微管的延伸而不是肌动蛋白的聚合是必要的。这些发现揭示了一种新的结构形式的可塑性,在该结构中,成熟的树突棘的头部可以调节与其突触前伴侣的相互作用程度。了解大脑中的胆碱能系统如何影响脊柱的形态和生理知识对于理解记忆形成很重要。

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