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Fine-tuned SRF activity controls asymmetrical neuronal outgrowth: implications for cortical migration neural tissue lamination and circuit assembly

机译:精细调整的SRF活动可控制神经元不对称长大:对皮层迁移神经组织层压和回路组装的影响

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摘要

The stimulus-regulated transcription factor Serum Response Factor (SRF) plays an important role in diverse neurodevelopmental processes related to structural plasticity and motile functions, although its precise mechanism of action has not yet been established. To further define the role of SRF in neural development and distinguish between cell-autonomous and non cell-autonomous effects, we bidirectionally manipulated SRF activity through gene transduction assays that allow the visualization of individual neurons and their comparison with neighboring control cells. In vitro assays showed that SRF promotes survival and filopodia formation and is required for normal asymmetric neurite outgrowth, indicating that its activation favors dendrite enlargement versus branching. In turn, in vivo experiments demonstrated that SRF-dependent regulation of neuronal morphology has important consequences in the developing cortex and retina, affecting neuronal migration, dendritic and axonal arborization and cell positioning in these laminated tissues. Overall, our results show that the controlled and timely activation of SRF is essential for the coordinated growth of neuronal processes, suggesting that this event regulates the switch between neuronal growth and branching during developmental processes.
机译:刺激调节转录因子血清反应因子(SRF)在与结构可塑性和运动功能有关的各种神经发育过程中起着重要作用,尽管其确切的作用机理尚未建立。为了进一步定义SRF在神经发育中的作用并区分细胞自主效应和非细胞自主效应,我们通过基因转导测定法双向操纵SRF活性,从而可以观察单个神经元并将其与邻近的对照细胞进行比较。体外测定表明,SRF促进存活和丝状伪足的形成,是正常不对称神经突向外生长所必需的,这表明其激活有利于枝晶扩大而不是分支。反过来,体内实验表明,依赖SRF的神经元形态调节在发育中的皮质和视网膜中具有重要的影响,影响神经元迁移,树突状和轴突乔化以及这些叠层组织中的细胞定位。总的来说,我们的结果表明,SRF的受控及时激活对于神经元过程的协调生长至关重要,这表明该事件调节了发育过程中神经元生长与分支之间的转换。

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