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Rho GTPase-dependent plasticity of dendritic spines in the adult brain

机译:Rho GTPase依赖性的成人脑中树突棘的可塑性

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摘要

Brain activity is associated with structural changes in the neural connections. However, in vivo imaging of the outer cortical layers has shown that dendritic spines, on which most excitatory synapses insist, are predominantly stable in adulthood. Changes in dendritic spines are governed by small GTPases of the Rho family through modulation of the actin cytoskeleton. Yet, while there are abundant data about this functional effect of Rho GTPases in vitro, there is limited evidence that Rho GTPase signaling in the brain is associated with changes in neuronal morphology. In the present work, both chronic in vivo two-photon imaging and Golgi staining reveal that the activation of Rho GTPases in the adult mouse brain is associated with little change of dendritic spines in the apical dendrites of primary visual cortex pyramidal neurons. On the contrary, considerable increase in spine density is observed (i) in the basal dendrites of the same neurons (ii) in both basal and apical dendrites of the hippocampal CA1 pyramidal cells. While confirming that Rho GTPase-dependent increase in spine density can be substantial, the study indicates region and dendrite selectivity with relative stability of superficial cortical circuits.
机译:大脑活动与神经连接的结构变化有关。然而,对皮质外层的体内成像显示,大多数兴奋性突触所坚持的树突棘在成年期主要稳定。树突棘的变化由Rho家族的小GTP酶通过调节肌动蛋白的细胞骨架来控制。然而,尽管有大量关于Rho GTPases在体外的这种功能作用的数据,但有限的证据表明大脑中Rho GTPase信号传导与神经元形态的改变有关。在目前的工作中,慢性体内双光子成像和高尔基体染色均显示,成年小鼠大脑中Rho GTPases的激活与初级视觉皮层锥体神经元的根状树突的树突棘几乎没有变化。相反,在(i)在海马CA1锥体细胞的基底和顶端树突中,相同神经元的基底树突中(ii)观察到了脊柱密度的显着增加。虽然证实Rho GTPase依赖性的脊柱密度增加可能是可观的,但该研究表明区域和树突选择性与表皮皮质回路的相对稳定性有关。

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