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The regulatory utilization of genetic redundancy through responsive backup circuits

机译:通过响应性备用电路对遗传冗余的监管利用

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摘要

Functional redundancies, generated by gene duplications, are highly widespread throughout all known genomes. One consequence of these redundancies is a tremendous increase to the robustness of organisms to mutations and other stresses. Yet, this very robustness also renders redundancy evolutionarily unstable, and it is, thus, predicted to have only a transient lifetime. In contrast, numerous reports describe instances of functional overlaps that have been conserved throughout extended evolutionary periods. More interestingly, many such backed-up genes were shown to be transcriptionally responsive to the intactness of their redundant partner and are up-regulated if the latter is mutationally inactivated. By manual inspection of the literature, we have compiled a list of such “responsive backup circuits” in a diverse list of species. Reviewing these responsive backup circuits, we extract recurring principles characterizing their regulation. We then apply modeling approaches to explore further their dynamic properties. Our results demonstrate that responsive backup circuits may function as ideal devices for filtering nongenetic noise from transcriptional pathways and obtaining regulatory precision. We thus challenge the view that such redundancies are simply leftovers of ancient duplications and suggest they are an additional component to the sophisticated machinery of cellular regulation. In this respect, we suggest that compensation for gene loss is merely a side effect of sophisticated design principles using functional redundancy.
机译:由基因重复产生的功能冗余在所有已知基因组中高度分布。这些冗余的结果之一是极大地提高了生物体抵抗突变和其他压力的能力。然而,这种非常强的鲁棒性也使冗余在进化上变得不稳定,因此,据预测它仅具有瞬态寿命。相反,许多报告都描述了功能扩展的实例,这些功能在整个扩展的进化时期都得到了保留。更有趣的是,许多这样的备份基因显示出对它们冗余伴侣的完整性有转录反应,并且如果后者被突变灭活,则它们被上调。通过人工检查文献,我们在各种各样的物种清单中汇编了此类“响应备用电路”的清单。回顾这些响应式备用电路,我们提取表征其调节的重复性原理。然后,我们应用建模方法来进一步探索其动态特性。我们的结果表明,响应性备用电路可以作为理想的设备,用于过滤来自转录途径的非遗传噪声并获得调节精度。因此,我们质疑这样的冗余仅仅是古代重复的残余,并建议它们是复杂的细胞调节机制的额外组成部分。在这方面,我们建议对基因丢失的补偿仅是使用功能冗余的复杂设计原理的副作用。

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