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Network-dosage compensation topologies as recurrent network motifs in natural gene networks

机译:网络剂量补偿拓扑作为天然基因网络中的循环网络主题

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Background Global noise in gene expression and chromosome duplication during cell-cycle progression cause inevitable fluctuations in the effective number of copies of gene networks in cells. These indirect and direct alterations of network copy numbers have the potential to change the output or activity of a gene network. For networks whose specific activity levels are crucial for optimally maintaining cellular functions, cells need to implement mechanisms to robustly compensate the effects of network dosage fluctuations. Results Here, we determine the necessary conditions for generalized N-component gene networks to be network-dosage compensated and show that the compensation mechanism can robustly operate over large ranges of gene expression levels. Furthermore, we show that the conditions that are necessary for network-dosage compensation are also sufficient. Finally, using genome-wide protein-DNA and protein-protein interaction data, we search the yeast genome for the abundance of specific dosage-compensation motifs and show that a substantial percentage of the natural networks identified contain at least one dosage-compensation motif. Conclusions Our results strengthen the hypothesis that the special network topologies that are necessary for network-dosage compensation may be recurrent network motifs in eukaryotic genomes and therefore may be an important design principle in gene network assembly in cells.
机译:背景技术在细胞周期进程中基因表达和染色体复制中的整体噪声会导致细胞中基因网络有效拷贝数的不可避免的波动。网络拷贝数的这些间接和直接改变有可能改变基因网络的输出或活性。对于其特定活动水平对于最佳维持细胞功能至关重要的网络,细胞需要实施机制来强有力地补偿网络剂量波动的影响。结果在这里,我们确定了要对广义N成分基因网络进行网络剂量补偿的必要条件,并表明补偿机制可以在较大范围的基因表达水平上稳定运行。此外,我们证明了网络剂量补偿所必需的条件也是足够的。最后,使用全基因组蛋白质-DNA和蛋白质-蛋白质相互作用数据,我们在酵母基因组中搜索了大量特定的剂量补偿基序,并表明鉴定出的大部分天然网络都包含至少一个剂量补偿基序。结论我们的结果加强了以下假设:网络剂量补偿所需的特殊网络拓扑可能是真核基因组中的复发性网络基序,因此可能是细胞基因网络组装中的重要设计原则。

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