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NESmapper: Accurate Prediction of Leucine-Rich Nuclear Export Signals Using Activity-Based Profiles

机译:NESmapper:使用基于活动的配置文件准确预测富含亮氨酸的核出口信号

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摘要

The nuclear export of proteins is regulated largely through the exportin/CRM1 pathway, which involves the specific recognition of leucine-rich nuclear export signals (NESs) in the cargo proteins, and modulates nuclear–cytoplasmic protein shuttling by antagonizing the nuclear import activity mediated by importins and the nuclear import signal (NLS). Although the prediction of NESs can help to define proteins that undergo regulated nuclear export, current methods of predicting NESs, including computational tools and consensus-sequence-based searches, have limited accuracy, especially in terms of their specificity. We found that each residue within an NES largely contributes independently and additively to the entire nuclear export activity. We created activity-based profiles of all classes of NESs with a comprehensive mutational analysis in mammalian cells. The profiles highlight a number of specific activity-affecting residues not only at the conserved hydrophobic positions but also in the linker and flanking regions. We then developed a computational tool, NESmapper, to predict NESs by using profiles that had been further optimized by training and combining the amino acid properties of the NES-flanking regions. This tool successfully reduced the considerable number of false positives, and the overall prediction accuracy was higher than that of other methods, including NESsential and Wregex. This profile-based prediction strategy is a reliable way to identify functional protein motifs. NESmapper is available at .
机译:蛋白质的核输出主要通过exportin / CRM1途径来调节,该途径涉及货物蛋白中富含亮氨酸的核出口信号(NESs)的特异性识别,并通过拮抗由C介导的核输入活性来调节核质蛋白穿梭。 importins和核输入信号(NLS)。尽管对NES的预测可以帮助定义经历核出口调控的蛋白质,但目前的预测NES的方法,包括计算工具和基于共有序列的搜索,准确性有限,尤其是在特异性方面。我们发现,NES中的每个残基在整个核出口活动中都具有很大的独立性和累加性。我们通过对哺乳动物细胞进行全面的突变分析,创建了所有类别NES的基于活动的概况。这些图谱不仅在保守的疏水位置而且在连接子和侧翼区域突出了许多影响特异活性的残基。然后,我们开发了一种计算工具NESmapper,以使用通过训练和组合NES侧翼区域氨基酸特性进一步优化的配置文件来预测NES。该工具成功地减少了相当数量的误报,并且总体预测准确性高于其他方法,包括NESsential和Wregex。这种基于配置文件的预测策略是识别功能蛋白基序的可靠方法。 NESmapper可从下载。

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