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首页> 外文期刊>Proteome science >Predicting synthetic lethal genetic interactions in Saccharomyces cerevisiae using short polypeptide clusters
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Predicting synthetic lethal genetic interactions in Saccharomyces cerevisiae using short polypeptide clusters

机译:使用短多肽簇预测酿酒酵母中的合成致死遗传相互作用

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摘要

Background Protein synthetic lethal genetic interactions are useful to define functional relationships between proteins and pathways. However, the molecular mechanism of synthetic lethal genetic interactions remains unclear. Results In this study we used the clusters of short polypeptide sequences, which are typically shorter than the classically defined protein domains, to characterize the functionalities of proteins. We developed a framework to identify significant short polypeptide clusters from yeast protein sequences, and then used these short polypeptide clusters as features to predict yeast synthetic lethal genetic interactions. The short polypeptide clusters based approach provides much higher coverage for predicting yeast synthetic lethal genetic interactions. Evaluation using experimental data sets showed that the short polypeptide clusters based approach is superior to the previous protein domain based one. Conclusion We were able to achieve higher performance in yeast synthetic lethal genetic interactions prediction using short polypeptide clusters as features. Our study suggests that the short polypeptide cluster may help better understand the functionalities of proteins.
机译:背景技术蛋白质合成致死的遗传相互作用可用于定义蛋白质与途径之间的功能关系。但是,合成致死遗传相互作用的分子机制仍不清楚。结果在这项研究中,我们使用短的多肽序列簇(通常比经典定义的蛋白质结构域短)来表征蛋白质的功能。我们开发了一个框架,从酵母蛋白序列中识别出重要的短多肽簇,然后将这些短多肽簇用作预测酵母合成致死遗传相互作用的特征。基于短多肽簇的方法为预测酵母合成致死的遗传相互作用提供了更高的覆盖率。使用实验数据集的评估显示,基于短多肽簇的方法优于先前基于蛋白质域的方法。结论我们能够在以短多肽簇为特征的酵母合成致死遗传相互作用预测中实现更高的性能。我们的研究表明,短的多肽簇可能有助于更好地了解蛋白质的功能。

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