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Transcription factor Sp4 regulates dendritic patterning during cerebellar maturation

机译:转录因子Sp4调节小脑成熟过程中的树突模式。

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摘要

Integration of inputs by a neuron depends on dendritic arborization patterns. In mammals, the genetic programs that regulate dynamic remodeling of dendrites during development and in response to activity are incompletely understood. Here we report that knockdown of the transcription factor Sp4 led to an increased number of highly branched dendrites during maturation of cerebellar granule neurons in dissociated cultures and in cerebellar cortex. Time-course analysis revealed that depletion of Sp4 led to persistent generation of dendritic branches and a failure in resorption of transient dendrites. Depolarization induced a reduction in the number of dendrites, and knockdown of Sp4 blocked depolarization-induced remodeling. Furthermore, overexpression of Sp4 wild type, but not a mutant lacking the DNA-binding domain, was sufficient to promote dendritic pruning in nondepolarizing conditions. These findings indicate that the transcription factor Sp4 controls dendritic patterning during cerebellar development by limiting branch formation and promoting activity-dependent pruning.
机译:神经元输入的整合取决于树突状乔木化模式。在哺乳动物中,尚不完全了解在发育过程中以及对活性的反应中调节树突动态重塑的遗传程序。在这里我们报道转录因子Sp4的敲低导致在分离的文化和小脑皮层中小脑颗粒神经元成熟期间高度分支的树突的数量增加。时程分析表明,Sp4的耗竭导致树突分支的持续生成和瞬态树突的吸收失败。去极化引起树突数目的减少,并且Sp4的敲低阻止了去极化诱导的重塑。此外,Sp4野生型的过表达,但不是缺乏DNA结合域的突变体的过表达,足以在非去极化条件下促进树突修剪。这些发现表明,转录因子Sp4通过限制分支的形成和促进活性依赖性修剪来控制小脑发育过程中的树突模式。

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