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Questing functions and structures of hypothetical proteins from Campylobacter jejuni: a computer-aided approach

机译:从空肠弯曲菌中推测蛋白质的功能和结构:计算机辅助方法

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摘要

( ) is considered to be one of the most frequent causes of bacterial gastroenteritis globally, especially in young children. The genome of contains many proteins with unknown functions termed as hypothetical proteins (HPs). These proteins might have essential biological role to show the full spectrum of this bacterium. Hence, our study aimed to determine the functions of HPs, pertaining to the genome of . An work flow integrating various tools were performed for functional assignment, three-dimensional structure determination, domain architecture predictors, subcellular localization, physicochemical characterization, and protein–protein interactions (PPIs). Sequences of 267 HPs of were analyzed and successfully attributed the function of 49 HPs with higher confidence. Here, we found proteins with enzymatic activity, transporters, binding and regulatory proteins as well as proteins with biotechnological interest. Assessment of the performance of various tools used in this analysis revealed an accuracy of 95% using receiver operating characteristic (ROC) curve analysis. Functional and structural predictions and the results from ROC analyses provided the validity of tools used in the present study. The approach used for this analysis leads us to assign the function of unknown proteins and relate them with the functions that have already been described in previous literature.
机译:()被认为是全球细菌性肠胃炎的最常见原因之一,尤其是在幼儿中。的基因组包含许多功能未知的蛋白质,称为假设蛋白质(HPs)。这些蛋白质可能具有重要的生物学作用,以显示这种细菌的全谱。因此,我们的研究旨在确定与HPs基因组有关的HPs的功能。进行了集成各种工具的工作流程,以进行功能分配,三维结构确定,域结构预测因子,亚细胞定位,理化特性以及蛋白质-蛋白质相互作用(PPI)。分析了267个HP的序列,并成功地归因于49个HP的功能。在这里,我们发现了具有酶促活性,转运蛋白,结合蛋白和调控蛋白以及具有生物技术意义的蛋白。通过使用接收器工作特性(ROC)曲线分析,评估了此分析中使用的各种工具的性能,发现其准确性为95%。功能和结构预测以及ROC分析的结果提供了本研究中使用的工具的有效性。用于此分析的方法使我们能够分配未知蛋白质的功能,并使它们与先前文献中已描述的功能相关联。

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