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Alternative splicing can lead to chaos

机译:替代拼接可能导致混乱

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摘要

Alternative splicing is a widespread phenomenon in higher eukaryotes, where it serves as a mechanism to increase the functional diversity of proteins. This phenomenon has been described for different classes of proteins, including transcription regulatory proteins. We demonstrated that in the simplest genetic system model the formation of the alternatively spliced isoforms with opposite functions (activators and repressors) could be a cause of transition to chaotic dynamics. Under the simplest genetic system we understand a system consisting of a single gene encoding the structure of a transcription regulatory protein whose expression is regulated by a feedback mechanism. As demonstrated by numerical analysis of the models, if the synthesized isoforms regulate the expression of their own gene acting through different sites and independently of each other, for the generation of chaotic dynamics it is sufficient that the regulatory proteins have a dimeric structure. If regulatory proteins act through one site, the chaotic dynamics is generated in the system only when the repressor protein is either a tetrameric or a higher-dimensional multimer. In this case the activator can be a dimer. It was also demonstrated that if the transcription factor isoforms exhibit either activating or inhibiting activity and are lower-dimensional multimers (< 4), independently of the regulation type the model demonstrates either cyclic or stationary trajectories.
机译:选择性剪接是高等真核生物中的一种普遍现象,它是增加蛋白质功能多样性的一种机制。对于不同种类的蛋白质,包括转录调节蛋白质,已经描述了这种现象。我们证明了在最简单的遗传系统模型中,具有相反功能(激活子和阻遏子)的可变剪接同工型的形成可能是过渡到混沌动力学的原因。在最简单的遗传系统下,我们理解一个由单个基因组成的系统,该基因编码转录调节蛋白的结构,其表达受反馈机制调节。如模型的数值分析所证明的,如果合成的同工型调节通过不同位点且彼此独立地起作用的自身基因的表达,则对于混沌动力学的产生,调节蛋白具有二聚体结构就足够了。如果调节蛋白通过一个位点起作用,则只有当阻遏蛋白是四聚体或高维多聚体时,才在系统中产生混沌动力学。在这种情况下,活化剂可以是二聚体。还证明了,如果转录因子同工型具有激活或抑制活性,并且是低维多聚体(<4),则与调节类型无关,该模型将显示循环或静止轨迹。

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