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UET: a database of evolutionarily-predicted functional determinants of protein sequences that cluster as functional sites in protein structures

机译:UET:蛋白质序列进化预测的功能决定簇的数据库,这些决定簇聚集在蛋白质结构中

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The structure and function of proteins underlie most aspects of biology and their mutational perturbations often cause disease. To identify the molecular determinants of function as well as targets for drugs, it is central to characterize the important residues and how they cluster to form functional sites. The Evolutionary Trace (ET) achieves this by ranking the functional and structural importance of the protein sequence positions. ET uses evolutionary distances to estimate functional distances and correlates genotype variations with those in the fitness phenotype. Thus, ET ranks are worse for sequence positions that vary among evolutionarily closer homologs but better for positions that vary mostly among distant homologs. This approach identifies functional determinants, predicts function, guides the mutational redesign of functional and allosteric specificity, and interprets the action of coding sequence variations in proteins, people and populations. Now, the UET database offers pre-computed ET analyses for the protein structure databank, and on-the-fly analysis of any protein sequence. A web interface retrieves ET rankings of sequence positions and maps results to a structure to identify functionally important regions. This UET database integrates several ways of viewing the results on the protein sequence or structure and can be found at http://mammoth.bcm.tmc.edu/uet/.
机译:蛋白质的结构和功能是生物学大多数方面的基础,它们的突变扰动经常引起疾病。为了鉴定功能的分子决定因素以及药物的靶标,表征重要的残基以及它们如何聚集形成功能位点至关重要。进化轨迹(ET)通过对蛋白质序列位置的功能和结构重要性进行排名来实现这一目标。 ET使用进化距离来估计功能距离,并将基因型变异与适应性表型相关联。因此,对于在进化上较近的同源物之间变化的序列位置,ET等级较差,而对于在远处的同源物之间变化最大的位置,ET等级较好。此方法可识别功能决定因素,预测功能,指导功能和变构特异性的突变重新设计,并解释蛋白质,人和群体中编码序列变异的作用。现在,UET数据库提供了针对蛋白质结构数据库的预先计算的ET分析,以及对任何蛋白质序列的实时分析。 Web界面检索序列位置的ET排名,并将结果映射到结构以识别功能上重要的区域。该UET数据库集成了查看蛋白质序列或结构结果的几种方法,可以在http://mammoth.bcm.tmc.edu/uet/上找到。

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