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首页> 外文期刊>Science Advances >Flux, toxicity, and expression costs generate complex genetic interactions in a metabolic pathway
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Flux, toxicity, and expression costs generate complex genetic interactions in a metabolic pathway

机译:助熔剂,毒性和表达成本在代谢途径中产生复杂的遗传相互作用

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Our ability to predict the impact of mutations on traits relevant for disease and evolution remains severely limited by the dependence of their effects on the genetic background and environment. Even when molecular interactions between genes are known, it is unclear how these translate to organism-level interactions between alleles. We therefore characterized the interplay of genetic and environmental dependencies in determining fitness by quantifying ~4000 fitness interactions between expression variants of two metabolic genes, starting from various environmentally modulated expression levels. We detect a remarkable variety of interactions dependent on initial expression levels and demonstrate that they can be quantitatively explained by a mechanistic model accounting for catabolic flux, metabolite toxicity, and expression costs. Complex fitness interactions between mutations can therefore be predicted simply from their simultaneous impact on a few connected molecular phenotypes.
机译:我们预测突变对疾病和演化相关性的影响的能力仍然受到对遗传背景和环境的影响的依赖性的严重限制。即使在已知基因之间的分子相互作用时,目前尚不清楚这些转化为等位基因之间的生物水平相互作用。因此,我们的特征在于通过量化两种代谢基因的表达变体之间的〜4000适应性相互作用来表征遗传和环境依赖性的相互作用,从各种环境调制的表达水平开始。我们检测到依赖于初始表达水平的卓越的相互作用,并证明它们可以通过机制模型核算用于分解代谢通量,代谢物毒性和表达成本的定量解释。因此,可以简单地预测突变之间的复杂性能相互作用,其同时影响少数连接的分子表型。

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