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Combining modelling and experimental approaches to explain how calcium signatures are decoded by calmodulin-binding transcription activators (CAMTAs) to produce specific gene expression responses.

机译:结合建模和实验方法来解释钙调蛋白结合转录激活因子(CAMTA)如何解码钙信号以产生特定的基因表达反应。

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摘要

Experimental data show that Arabidopsis thaliana is able to decode different calcium signatures to produce specific gene expression responses. It is also known that calmodulin-binding transcription activators (CAMTAs) have calmodulin (CaM)-binding domains. Therefore, the gene expression responses regulated by CAMTAs respond to calcium signals. However, little is known about how different calcium signatures are decoded by CAMTAs to produce specific gene expression responses.udA dynamic model of Ca2+–CaM–CAMTA binding and gene expression responses is developed following thermodynamic and kinetic principles. The model is parameterized using experimental data. Then it is used to analyse how different calcium signatures are decoded by CAMTAs to produce specific gene expression responses.udModelling analysis reveals that: calcium signals in the form of cytosolic calcium concentration elevations are nonlinearly amplified by binding of Ca2+, CaM and CAMTAs; amplification of Ca2+ signals enables calcium signatures to be decoded to give specific CAMTA-regulated gene expression responses; gene expression responses to a calcium signature depend upon its history and accumulate all the information during the lifetime of the calcium signature.udInformation flow from calcium signatures to CAMTA-regulated gene expression responses has been established by combining experimental data with mathematical modelling.
机译:实验数据表明拟南芥能够解码不同的钙特征以产生特定的基因表达反应。还已知钙调蛋白结合转录激活剂(CAMTA)具有钙调蛋白(CaM)结合结构域。因此,由CAMTA调节的基因表达反应对钙信号作出反应。但是,对于CAMTA如何解码不同的钙特征以产生特定的基因表达反应知之甚少。 ud遵循热力学和动力学原理,开发了Ca2 + –CaM–CAMTA结合和基因表达反应的动力学模型。使用实验数据对模型进行参数化。然后,它被用来分析CAMTA如何解码不同的钙特征,从而产生特定的基因表达反应。 Ca2 +信号的放大使钙信号能够被解码,从而产生特定的CAMTA调控的基因表达响应;钙签名的基因表达响应取决于其历史,并在钙签名的生命期内积累所有信息。 ud通过将实验数据与数学建模相结合,建立了从钙签名到CAMTA调控的基因表达响应的信息流。

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  • 年度 2015
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