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Phylogenetic Analysis and Classification of the Fungal bHLH Domain

机译:真菌bHLH结构域的系统发育分析和分类

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摘要

The basic Helix-Loop-Helix (bHLH) domain is an essential highly conserved DNA-binding domain found in many transcription factors in all eukaryotic organisms. The bHLH domain has been well studied in the Animal and Plant Kingdoms but has yet to be characterized within Fungi. Herein, we obtained and evaluated the phylogenetic relationship of 490 fungal-specific bHLH containing proteins from 55 whole genome projects composed of 49 Ascomycota and 6 Basidiomycota organisms. We identified 12 major groupings within Fungi (F1–F12); identifying conserved motifs and functions specific to each group. Several classification models were built to distinguish the 12 groups and elucidate the most discerning sites in the domain. Performance testing on these models, for correct group classification, resulted in a maximum sensitivity and specificity of 98.5% and 99.8%, respectively. We identified 12 highly discerning sites and incorporated those into a set of rules (simplified model) to classify sequences into the correct group. Conservation of amino acid sites and phylogenetic analyses established that like plant bHLH proteins, fungal bHLH–containing proteins are most closely related to animal Group B. The models used in these analyses were incorporated into a software package, the source code for which is available at www.fungalgenomics.ncsu.edu.
机译:基本的螺旋-螺旋-螺旋(bHLH)域是在所有真核生物的许多转录因子中发现的必不可少的高度保守的DNA结合域。 bHLH结构域已在动植物界进行了深入研究,但尚未在真菌中鉴定。本文中,我们从55个由49个子囊菌和6个担子菌组成的全基因组计划中获得并评估了490种含有真菌特异性bHLH的蛋白质的系统发育关系。我们确定了真菌(F1-F12)内的12个主要类别。识别每个组特有的保守基序和功能。建立了几种分类模型来区分这12个组,并阐明该域中最有眼光的站点。在这些模型上进行性能测试(正确的组分类)后,最大灵敏度和特异性分别为98.5%和99.8%。我们确定了12个高度识别的位点,并将其整合到一组规则(简化模型)中,以将序列分类为正确的组。氨基酸位点的保守性和系统发育分析表明,与植物bHLH蛋白一样,含有真菌bHLH的蛋白与动物B组关系最密切。这些分析中使用的模型已整合到软件包中,该软件包的源代码可在www.fungalgenomics.ncsu.edu。

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