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海胆帽依赖型翻译起始模型:迈向真核翻译调控网络的一步。

Model of cap-dependent translation initiation in sea urchin: a step towards the eukaryotic translation regulation network.

机构信息

UPMC univ Paris 06, UMR 7150 Mer et santé, Equipe Traduction Cycle Cellulaire et Développement, Station Biologique, Roscoff, France.

出版信息

Mol Reprod Dev. 2010 Mar;77(3):257-64. doi: 10.1002/mrd.21142.

Abstract

The large and rapid increase in the rate of protein synthesis following fertilization of the sea urchin egg has long been a paradigm of translational control, an important component of the regulation of gene expression in cells. This translational up-regulation is linked to physiological changes that occur upon fertilization and is necessary for entry into first cell division cycle. Accumulated knowledge on cap-dependent initiation of translation makes it suited and timely to start integrating the data into a system view of biological functions. Using a programming environment for system biology coupled with model validation (named Biocham), we have built an integrative model for cap-dependent initiation of translation. The model is described by abstract rules. It contains 51 reactions involved in 74 molecular complexes. The model proved to be coherent with existing knowledge by using queries based on computational tree logic (CTL) as well as Boolean simulations. The model could simulate the change in translation occurring at fertilization in the sea urchin model. It could also be coupled with an existing model designed for cell-cycle control. Therefore, the cap-dependent translation initiation model can be considered a first step towards the eukaryotic translation regulation network.

摘要

受精后海胆卵中蛋白质合成速率的大幅快速增加一直是翻译控制的典范,是细胞中基因表达调控的重要组成部分。这种翻译的上调与受精时发生的生理变化有关,是进入第一次细胞分裂周期所必需的。关于帽依赖性翻译起始的已有知识积累使其适合并及时将数据整合到生物功能的系统视图中。我们使用系统生物学的编程环境和模型验证(名为 Biocham),为帽依赖性翻译起始构建了一个综合模型。该模型通过抽象规则进行描述。它包含 74 个分子复合物中的 51 个反应。该模型通过基于计算树逻辑 (CTL) 的查询以及布尔模拟,证明与现有知识具有一致性。该模型可以模拟海胆模型中受精时发生的翻译变化。它还可以与设计用于细胞周期控制的现有模型耦合。因此,帽依赖性翻译起始模型可以被视为真核翻译调控网络的第一步。

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