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Versatility of Cooperative Transcriptional Activation: A Thermodynamical Modeling Analysis for Greater-Than-Additive and Less-Than-Additive Effects

机译:合作转录激活的多功能性:大于加性和小于加性效应的热力学模型分析。

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摘要

We derive a statistical model of transcriptional activation using equilibrium thermodynamics of chemical reactions. We examine to what extent this statistical model predicts synergy effects of cooperative activation of gene expression. We determine parameter domains in which greater-than-additive and less-than-additive effects are predicted for cooperative regulation by two activators. We show that the statistical approach can be used to identify different causes of synergistic greater-than-additive effects: nonlinearities of the thermostatistical transcriptional machinery and three-body interactions between RNA polymerase and two activators. In particular, our model-based analysis suggests that at low transcription factor concentrations cooperative activation cannot yield synergistic greater-than-additive effects, i.e., DNA transcription can only exhibit less-than-additive effects. Accordingly, transcriptional activity turns from synergistic greater-than-additive responses at relatively high transcription factor concentrations into less-than-additive responses at relatively low concentrations. In addition, two types of re-entrant phenomena are predicted. First, our analysis predicts that under particular circumstances transcriptional activity will feature a sequence of less-than-additive, greater-than-additive, and eventually less-than-additive effects when for fixed activator concentrations the regulatory impact of activators on the binding of RNA polymerase to the promoter increases from weak, to moderate, to strong. Second, for appropriate promoter conditions when activator concentrations are increased then the aforementioned re-entrant sequence of less-than-additive, greater-than-additive, and less-than-additive effects is predicted as well. Finally, our model-based analysis suggests that even for weak activators that individually induce only negligible increases in promoter activity, promoter activity can exhibit greater-than-additive responses when transcription factors and RNA polymerase interact by means of three-body interactions. Overall, we show that versatility of transcriptional activation is brought about by nonlinearities of transcriptional response functions and interactions between transcription factors, RNA polymerase and DNA.
机译:我们使用化学反应的平衡热力学导出了转录激活的统计模型。我们检查该统计模型在多大程度上预测了基因表达协同激活的协同效应。我们确定了参数域,其中预测了大于两个加法器的协同调节的大于加法和小于加法的效应。我们表明统计方法可以用于识别不同的原因产生大于加性的协同效应:恒温转录机制的非线性以及RNA聚合酶和两种激活剂之间的三体相互作用。特别地,我们基于模型的分析表明,在低转录因子浓度下,协同激活不能产生大于加性的协同作用,即DNA转录只能显示小于加性的作用。因此,转录活性从相对高的转录因子浓度下的协同大于应答的反应转变为相对低浓度下的小于累加应答的反应。另外,预测了两种类型的折返现象。首先,我们的分析预测,在特定的情况下,当固定浓度的激活剂对激活剂结合的调节作用产生调节作用时,转录活性将表现出一系列小于加性,大于加性,最终小于加性的作用。启动子的RNA聚合酶从弱,中等到强增加。其次,对于适当的启动子条件,当活化剂浓度增加时,还预测了上述小于可加,大于可加和小于可加的效应的再进入序列。最后,我们基于模型的分析表明,即使对于单独激活启动子活性可忽略不计的弱激活剂,当转录因子和RNA聚合酶通过三体相互作用相互作用时,启动子活性也可能表现出大于加性的反应。总的来说,我们表明转录激活的多功能性是由转录响应功能的非线性以及转录因子,RNA聚合酶和DNA之间的相互作用带来的。

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