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时间上删除 Arl13b 表明,神经管的模式错误会随着时间的推移而纠正细胞命运。

Temporal deletion of Arl13b reveals that a mispatterned neural tube corrects cell fate over time.

机构信息

Graduate Program in Genetics and Molecular Biology, Emory University School of Medicine, Atlanta, GA 30322, USA.

出版信息

Development. 2012 Nov;139(21):4062-71. doi: 10.1242/dev.082321. Epub 2012 Sep 26.

Abstract

Cilia are necessary for sonic hedgehog (Shh) signaling, which is required to pattern the neural tube. We know that ventral neural cell fates are defined by a specific cohort of transcription factors that are induced by distinct thresholds of Shh activity mediated by opposing gradients of Gli activator (GliA) and Gli repressor (GliR). Despite this understanding, the role of Shh as an instructive morphogen is viewed as increasingly complex, with current models integrating positive inputs in terms of ligand concentration and time, along with negative feedback via the downstream gene regulatory network. To investigate the relative contributions of the positive and negative inputs from Shh signaling in neural patterning, we took advantage of a protein that uncouples the regulation of GliA and GliR: the cilia protein ADP-ribosylation factor-like 13b (Arl13b). By deleting Arl13b in mouse, we induced low-level constitutive GliA function at specific developmental stages and defined a crucial period prior to E10.5 when shifts in the level of GliA cause cells to change their fate. Strikingly, we found that improperly patterned cells in these mice converted to the wild-type pattern by E12.5. We further showed that the recovery of patterning did not occur when we also deleted Gli3, the primary GliR in the neural tube, revealing a crucial role of Gli3 in the maintenance of neural patterning.

摘要

纤毛对于 sonic hedgehog (Shh) 信号转导是必需的,Shh 信号对于神经管的模式形成是必需的。我们知道,腹侧神经细胞命运是由一组特定的转录因子定义的,这些转录因子是由 Shh 活性的不同阈值通过相反的 Gli 激活物 (GliA) 和 Gli 抑制剂 (GliR) 梯度诱导的。尽管有了这种认识,但 Shh 作为一种指导形态发生素的作用被认为越来越复杂,目前的模型整合了配体浓度和时间方面的正输入,以及通过下游基因调控网络的负反馈。为了研究 Shh 信号在神经模式形成中的正输入和负输入的相对贡献,我们利用了一种可以分离 GliA 和 GliR 调节的蛋白质:纤毛蛋白 ADP-核糖基化因子样 13b (Arl13b)。通过在小鼠中删除 Arl13b,我们在特定的发育阶段诱导了低水平的组成型 GliA 功能,并定义了一个关键时期,即在 E10.5 之前,当 GliA 的水平发生变化时,细胞会改变它们的命运。引人注目的是,我们发现这些小鼠中异常模式化的细胞在 E12.5 时恢复为野生型模式。我们进一步表明,当我们也删除Gli3 时,即神经管中的主要 GliR,这种模式化的恢复不会发生,这揭示了 Gli3 在维持神经模式化中的关键作用。

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