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首页> 外文期刊>PLoS Computational Biology >A Discrete Model of Drosophila Eggshell Patterning Reveals Cell-Autonomous and Juxtacrine Effects
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A Discrete Model of Drosophila Eggshell Patterning Reveals Cell-Autonomous and Juxtacrine Effects

机译:果蝇卵壳模式的离散模型揭示了细胞自主和邻分泌的作用

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The Drosophila eggshell constitutes a remarkable system for the study of epithelial patterning, both experimentally and through computational modeling. Dorsal eggshell appendages arise from specific regions in the anterior follicular epithelium that covers the oocyte: two groups of cells expressing broad (roof cells) bordered by rhomboid expressing cells (floor cells). Despite the large number of genes known to participate in defining these domains and the important modeling efforts put into this developmental system, key patterning events still lack a proper mechanistic understanding and/or genetic basis, and the literature appears to conflict on some crucial points. We tackle these issues with an original, discrete framework that considers single-cell models that are integrated to construct epithelial models. We first build a phenomenological model that reproduces wild type follicular epithelial patterns, confirming EGF and BMP signaling input as sufficient to establish the major features of this patterning system within the anterior domain. Importantly, this simple model predicts an instructive juxtacrine signal linking the roof and floor domains. To explore this prediction, we define a mechanistic model that integrates the combined effects of cellular genetic networks, cell communication and network adjustment through developmental events. Moreover, we focus on the anterior competence region, and postulate that early BMP signaling participates with early EGF signaling in its specification. This model accurately simulates wild type pattern formation and is able to reproduce, with unprecedented level of precision and completeness, various published gain-of-function and loss-of-function experiments, including perturbations of the BMP pathway previously seen as conflicting results. The result is a coherent model built upon rules that may be generalized to other epithelia and developmental systems.
机译:果蝇的蛋壳构成了一个通过实验和计算建模研究上皮模式的杰出系统。背卵壳附肢来自覆盖卵母细胞的前卵泡上皮中的特定区域:两组表达宽细胞(屋顶细胞)的细胞与菱形表达细胞(地板细胞)接壤。尽管已知有大量基因参与定义这些结构域,并且已在该发育系统中进行了重要的建模工作,但主要的模式形成事件仍缺乏适当的机制理解和/或遗传基础,并且文献似乎在某些关键点上存在冲突。我们使用原始的离散框架解决这些问题,该框架考虑了集成构建上皮模型的单细胞模型。我们首先建立一个复制野生型滤泡上皮模式的现象学模型,确认EGF和BMP信号输入足以在前域内建立该模式系统的主要特征。重要的是,这个简单的模型可预测出一个指导性的将屋顶和地板区域连接起来的并口信号。为了探索这一预测,我们定义了一个机械模型,该模型整合了细胞遗传网络,细胞通讯和通过发育事件进行网络调节的综合作用。此外,我们专注于前功能区,并假设早期BMP信号参与其规范中的早期EGF信号。该模型可以精确模拟野生型模式的形成,并能够以前所未有的精确度和完整性来复制各种已发表的功能获得和功能丧失实验,包括对BMP途径的扰动,以前认为这是相互矛盾的结果。结果是建立在规则上的连贯模型,这些规则可能会推广到其他上皮细胞和发育系统。

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