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Accurate discrimination of bHLH domains in plants, animals, and fungi using biologically meaningful sites

机译:使用生物学上有意义的位点准确区分植物,动物和真菌中的bHLH结构域

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Background The highly conserved bHLH (basic Helix-Loop-Helix) domain, found in many transcription factors, has been well characterized separately in Plants, Animals, and Fungi. While conserved, even functionally constrained sites have varied since the Eukarya split. Our research identifies those slightly variable sites that were highly characteristic of Plants, Animals, or Fungi. Results Through discriminant analysis, we identified five highly discerning DNA-binding amino acid sites. Additionally, by incorporating Kingdom specific HMMs, we were able to construct a tool to quickly and accurately identify and classify bHLH sequences using these sites. Conclusions We conclude that highly discerning sites identified through our analysis were likely under functional constraints specific to each Kingdom. We also demonstrated the utility of our tool by identifying and classifying previously unknown bHLH domains in both characterized genomes and from sequences in a large environmental sample.
机译:背景技术在许多转录因子中发现的高度保守的bHLH(基本螺旋-螺旋-螺旋)结构域已在植物,动物和真菌中分别得到了很好的表征。自保存以来,自从Eukarya分裂以来,即使功能受到限制的站点也发生了变化。我们的研究确定了那些植物,动物或真菌极具特征的轻微变化的位点。结果通过判别分析,我们确定了五个高度辨别性的DNA结合氨基酸位点。此外,通过合并王国特定的HMM,我们能够构建使用这些位点快速准确地识别和分类bHLH序列的工具。结论我们得出的结论是,通过我们的分析确定的高辨识度站点可能受到每个王国特定的功能约束。我们还通过在特征基因组和大型环境样本中的序列中识别和分类以前未知的bHLH域,证明了我们工具的实用性。

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