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定性动力学建模能够正式解释中胚层特化并预测新的发育表型。

Qualitative Dynamical Modelling Can Formally Explain Mesoderm Specification and Predict Novel Developmental Phenotypes.

作者信息

Mbodj Abibatou, Gustafson E Hilary, Ciglar Lucia, Junion Guillaume, Gonzalez Aitor, Girardot Charles, Perrin Laurent, Furlong Eileen E M, Thieffry Denis

机构信息

Aix-Marseille Université, Marseille, France.

INSERM, Marseille, France.

出版信息

PLoS Comput Biol. 2016 Sep 6;12(9):e1005073. doi: 10.1371/journal.pcbi.1005073. eCollection 2016 Sep.

Abstract

Given the complexity of developmental networks, it is often difficult to predict the effect of genetic perturbations, even within coding genes. Regulatory factors generally have pleiotropic effects, exhibit partially redundant roles, and regulate highly interconnected pathways with ample cross-talk. Here, we delineate a logical model encompassing 48 components and 82 regulatory interactions involved in mesoderm specification during Drosophila development, thereby providing a formal integration of all available genetic information from the literature. The four main tissues derived from mesoderm correspond to alternative stable states. We demonstrate that the model can predict known mutant phenotypes and use it to systematically predict the effects of over 300 new, often non-intuitive, loss- and gain-of-function mutations, and combinations thereof. We further validated several novel predictions experimentally, thereby demonstrating the robustness of model. Logical modelling can thus contribute to formally explain and predict regulatory outcomes underlying cell fate decisions.

摘要

鉴于发育网络的复杂性,即使在编码基因范围内,通常也很难预测基因扰动的影响。调控因子一般具有多效性,发挥部分冗余作用,并调控具有大量相互作用的高度互联的信号通路。在此,我们描绘了一个逻辑模型,该模型包含果蝇发育过程中中胚层特化所涉及的48个组分和82个调控相互作用,从而对文献中所有可用的遗传信息进行了形式化整合。从中胚层衍生出的四种主要组织对应于不同的稳定状态。我们证明该模型能够预测已知的突变体表型,并利用它系统地预测300多个新的、通常是非直观的功能丧失和功能获得突变及其组合的影响。我们通过实验进一步验证了几个新的预测结果,从而证明了该模型的稳健性。因此,逻辑建模有助于从形式上解释和预测细胞命运决定背后的调控结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f23a/5012701/0aa5fc998176/pcbi.1005073.g001.jpg

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