首页> 外文期刊>Cerebral cortex >Activity-dependent Regulation of Synapse and Dendritic Spine Morphology in Developing Barrel Cortex Requires Phospholipase C-{beta}1 Signalling.
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Activity-dependent Regulation of Synapse and Dendritic Spine Morphology in Developing Barrel Cortex Requires Phospholipase C-{beta}1 Signalling.

机译:发育中的桶皮质中突触和树突状脊柱形态的活动依赖调节需要磷脂酶C- {beta} 1信号。

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摘要

The phospholipase C-beta1 (PLC-beta1) signalling pathway, activated via metabotropic glutamate receptors (mGluRs), is implicated in activity-dependent development of the cerebral cortex, as both PLC-beta1 and mGluR5 knockout mice exhibit disrupted barrel formation in somatosensory cortex. To characterize the effects of this signalling system on development of synaptic circuitry in barrel cortex, we have examined neuronal ultrastructure, synapse formation and dendritic spine morphology in PLC-beta1 knockout mice. Qualitative ultrastructure of neurons and synapse density in layers 2-4 of barrel cortex were unchanged in PLC-beta1 knockout mice during development [postnatal day (P) 5] and in mature cortex (P19-21). We found a decrease in the proportion of synapses with symmetric morphology at P5 that was gone by P19-21, indicating a transient imbalance in excitatory and inhibitory circuitry. We also investigated dendritic spines by back-labelling layer 5 pyramidal neurons with carbocyanine. We observed normal dendritic spine densities on apical dendrites as they passed through layer 4 of barrel cortex, but spine morphology was altered in PLC-beta1 knockout mice at P9. These observations indicate that the PLC-beta1 signalling pathway plays a role in the development of normal cortical circuitry. Interrupting this regulation leads to changes in synapse and dendritic spine morphology, possibly altering post-synaptic integration of signal.
机译:通过代谢型谷氨酸受体(mGluRs)激活的磷脂酶C-beta1(PLC-beta1)信号通路与大脑皮层的活动依赖性发育有关,因为PLC-beta1和mGluR5敲除小鼠均在体感皮层中显示出桶形结构的破坏。 。为了表征该信号系统对桶状皮层突触电路发育的影响,我们检查了PLC-beta1基因敲除小鼠的神经元超微结构,突触形成和树突棘形态。在发育[产后第5天]和成熟皮质(P19-21)期间,PLC-beta1基因敲除小鼠的桶状皮质2-4层神经元的定性超微结构和突触密度均未改变。我们发现在P5处具有对称形态的突触比例减少了,而P19-21消失了,这表明兴奋性和抑制性电路中的瞬时失衡。我们还通过用花青素对5层锥体神经元进行背标记来研究树突棘。我们观察到顶端树突穿过桶状皮质的第4层时,正常的树突棘密度,但在P9的PLC-beta1基因敲除小鼠中,脊柱形态发生了改变。这些观察结果表明,PLC-beta1信号通路在正常皮质电路的发育中起作用。中断该调节可导致突触和树突棘形态发生变化,可能会改变突触后的信号整合。

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