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Spatial Analysis of Expression Patterns Predicts Genetic Interactions at the Mid-Hindbrain Boundary

机译:表达模式的空间分析预测在中脑桥边界的遗传相互作用。

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摘要

The isthmic organizer mediating differentiation of mid- and hindbrain during vertebrate development is characterized by a well-defined pattern of locally restricted gene expression domains around the mid-hindbrain boundary (MHB). This pattern is established and maintained by a regulatory network between several transcription and secreted factors that is not yet understood in full detail. In this contribution we show that a Boolean analysis of the characteristic spatial gene expression patterns at the murine MHB reveals key regulatory interactions in this network. Our analysis employs techniques from computational logic for the minimization of Boolean functions. This approach allows us to predict also the interplay of the various regulatory interactions. In particular, we predict a maintaining, rather than inducing, effect of Fgf8 on Wnt1 expression, an issue that remained unclear from published data. Using mouse anterior neural plate/tube explant cultures, we provide experimental evidence that Fgf8 in fact only maintains but does not induce ectopic Wnt1 expression in these explants. In combination with previously validated interactions, this finding allows for the construction of a regulatory network between key transcription and secreted factors at the MHB. Analyses of Boolean, differential equation and reaction-diffusion models of this network confirm that it is indeed able to explain the stable maintenance of the MHB as well as time-courses of expression patterns both under wild-type and various knock-out conditions. In conclusion, we demonstrate that similar to temporal also spatial expression patterns can be used to gain information about the structure of regulatory networks. We show, in particular, that the spatial gene expression patterns around the MHB help us to understand the maintenance of this boundary on a systems level.
机译:介导脊椎动物发育过程中中脑和后脑分化的等温组织器的特征是围绕中后脑边界(MHB)的局部限制性基因表达域的定义明确的模式。这种模式是由尚不清楚的几个转录和分泌因子之间的调控网络建立和维持的。在这项贡献中,我们表明对小鼠MHB处特征性空间基因表达模式的布尔分析揭示了该网络中的关键调控相互作用。我们的分析采用了来自计算逻辑的技术来最小化布尔函数。这种方法使我们能够预测各种监管相互作用的相互作用。特别是,我们预测Fgf8对Wnt1表达的维持而不是诱导作用,这一问题从公开数据中尚不清楚。使用小鼠前神经板/管外植体培养,我们提供了实验证据,Fgf8实际上仅维持但不会诱导这些外植体中异位Wnt1表达。结合先前验证的相互作用,此发现可在MHB的关键转录和分泌因子之间构建调控网络。该网络的布尔,微分方程和反应扩散模型的分析证实,它确实能够解释MHB的稳定维持以及在野生型和各种敲除条件下的表达模式的时程。总之,我们证明了类似于时间的空间表达模式也可以用于获取有关监管网络结构的信息。我们特别表明,MHB周围的空间基因表达模式可帮助我们了解系统水平上该边界的维持情况。

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