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首页> 外文期刊>PLoS Biology >The Robustness of a Signaling Complex to Domain Rearrangements Facilitates Network Evolution
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The Robustness of a Signaling Complex to Domain Rearrangements Facilitates Network Evolution

机译:信令复合体对域重排的鲁棒性有助于网络发展

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The rearrangement of protein domains is known to have key roles in the evolution of signaling networks and, consequently, is a major tool used to synthetically rewire networks. However, natural mutational events leading to the creation of proteins with novel domain combinations, such as in frame fusions followed by domain loss, retrotranspositions, or translocations, to name a few, often simultaneously replace pre-existing genes. Thus, while proteins with new domain combinations may establish novel network connections, it is not clear how the concomitant deletions are tolerated. We investigated the mechanisms that enable signaling networks to tolerate domain rearrangement-mediated gene replacements. Using as a model system the yeast mitogen activated protein kinase (MAPK)-mediated mating pathway, we analyzed 92 domain-rearrangement events affecting 11 genes. Our results indicate that, while domain rearrangement events that result in the loss of catalytic activities within the signaling complex are not tolerated, domain rearrangements can drastically alter protein interactions without impairing function. This suggests that signaling complexes can maintain function even when some components are recruited to alternative sites within the complex. Furthermore, we also found that the ability of the complex to tolerate changes in interaction partners does not depend on long disordered linkers that often connect domains. Taken together, our results suggest that some signaling complexes are dynamic ensembles with loose spatial constraints that could be easily re-shaped by evolution and, therefore, are ideal targets for cellular engineering.
机译:已知蛋白结构域的重排在信号网络的进化中具有关键作用,因此,它是用于合成网络重新连接的主要工具。然而,自然突变事件导致产生具有新颖结构域组合的蛋白质,例如框内融合,然后是结构域丢失,逆转座或易位,仅举几例,它们通常会同时替换现有基因。因此,尽管具有新结构域组合的蛋白质可以建立新颖的网络连接,但尚不清楚如何耐受伴随的缺失。我们研究了使信号网络能够耐受域重排介导的基因置换的机制。使用作为模型系统的酵母促分裂原活化蛋白激酶(MAPK)介导的交配途径,我们分析了影响11个基因的92个结构域重排事件。我们的结果表明,虽然不容忍导致信号复合物中催化活性丧失的结构域重排事件,但结构域重排可以在不损害功能的情况下极大地改变蛋白质相互作用。这表明,即使某些组件被招募到复合体内的其他站点,信令复合体也可以维持功能。此外,我们还发现复合物耐受相互作用伴侣变化的能力不依赖于经常连接域的长期混乱的接头。综上所述,我们的结果表明,某些信号复合物是具有宽松空间约束的动态集合,可以很容易地通过进化来重塑,因此,它们是细胞工程的理想目标。

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