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Computer-Based Annotation of Putative AraC/XylS-Family Transcription Factors of Known Structure but Unknown Function

机译:结构已知但功能未知的推定AraC / XylS家族转录因子的计算机注释

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摘要

Currently, about 20 crystal structures per day are released and deposited in the Protein Data Bank. A significant fraction of these structures is produced by research groups associated with the structural genomics consortium. The biological function of many of these proteins is generally unknown or not validated by experiment. Therefore, a growing need for functional prediction of protein structures has emerged. Here we present an integrated bioinformatics method that combines sequence-based relationships and three-dimensional (3D) structural similarity of transcriptional regulators with computer prediction of their cognate DNA binding sequences. We applied this method to the AraC/XylS family of transcription factors, which is a large family of transcriptional regulators found in many bacteria controlling the expression of genes involved in diverse biological functions. Three putative new members of this family with known 3D structure but unknown function were identified for which a probable functional classification is provided. Our bioinformatics analyses suggest that they could be involved in plant cell wall degradation (Lin2118 protein from Listeria innocua, PDB code 3oou), symbiotic nitrogen fixation (protein from Chromobacterium violaceum, PDB code 3oio), and either metabolism of plant-derived biomass or nitrogen fixation (protein from Rhodopseudomonas palustris, PDB code 3mn2).
机译:目前,每天大约释放20种晶体结构并将其存放在蛋白质数据库中。这些结构的很大一部分是由与结构基因组学协会相关的研究小组生产的。这些蛋白质中许多蛋白质的生物学功能通常是未知的,或者未经实验验证。因此,对蛋白质结构的功能预测的需求日益增长。在这里,我们提出了一种综合的生物信息学方法,该方法结合了基于序列的关系和转录调节因子的三维(3D)结构相似性,并结合了计算机对其同源DNA结合序列的预测。我们将这种方法应用于转录因子的AraC / XylS家族,该家族是在许多细菌中发现的大量转录调节因子家族,这些细菌控制着涉及多种生物学功能的基因的表达。确定了该家族的三个假定的新成员,这些成员具有已知的3D结构,但功能未知,为此提供了可能的功能分类。我们的生物信息学分析表明,它们可能与植物细胞壁降解(无病李斯特氏菌的Lin2118蛋白,PDB代码3oou),共生固氮(紫罗兰色杆菌的蛋白,PDB代码3oio)以及植物来源的生物质或氮的代谢有关。固定(来自红假单胞菌的蛋白质,PDB代码3mn2)。

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