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首页> 外文期刊>Molecular and Cellular Biology >Satb1 Ablation Alters Temporal Expression of Immediate Early Genes and Reduces Dendritic Spine Density during Postnatal Brain Development
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Satb1 Ablation Alters Temporal Expression of Immediate Early Genes and Reduces Dendritic Spine Density during Postnatal Brain Development

机译:Satb1消融改变产后大脑发育过程中立即早期基因的时间表达并降低树突棘密度。

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Complex behaviors, such as learning and memory, are associated with rapid changes in gene expression of neurons and subsequent formation of new synaptic connections. However, how external signals are processed to drive specific changes in gene expression is largely unknown. We found that the genome organizer protein Satb1 is highly expressed in mature neurons, primarily in the cerebral cortex, dentate hilus, and amygdala. In Satb1-null mice, cortical layer morphology was normal. However, in postnatal Satb1-null cortical pyramidal neurons, we found a substantial decrease in the density of dendritic spines, which play critical roles in synaptic transmission and plasticity. Further, we found that in the cerebral cortex, Satb1 binds to genomic loci of multiple immediate early genes (IEGs) (Fos, Fosb, Egr1, Egr2, Arc, and Bdnf) and other key neuronal genes, many of which have been implicated in synaptic plasticity. Loss of Satb1 resulted in greatly alters timing and expression levels of these IEGs during early postnatal cerebral cortical development and also upon stimulation in cortical organotypic cultures. These data indicate that Satb1 is required for proper temporal dynamics of IEG expression. Based on these findings, we propose that Satb1 plays a critical role in cortical neurons to facilitate neuronal plasticity.
机译:复杂的行为,如学习和记忆,与神经元基因表达的快速变化和新的突触连接的形成有关。但是,如何处理外部信号以驱动基因表达的特定变化尚不清楚。我们发现,基因组组织蛋白Satb1在成熟神经元中高度表达,主要在大脑皮层,齿状hilus和杏仁核中。在 Satb1 -null小鼠中,皮质层形态正常。但是,在出生后的Satb1空皮质锥体神经元中,我们发现树突棘密度显着降低,这在突触传递和可塑性中起关键作用。此外,我们发现在大脑皮层中,Satb1与多个立即早期基因(IEG)( Fos Fosb Egr1 Egr2 Arc Bdnf )和其他关键神经元基因,其中许多基因与突触可塑性有关。 Satb1的丢失会导致这些IEG在出生后早期大脑皮层发育期间以及皮层器官型培养物中的刺激作用下大大改变时间和表达水平。这些数据表明Satb1是IEG表达适当的时间动态所必需的。基于这些发现,我们建议Satb1在促进神经元可塑性的皮层神经元中起关键作用。

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