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An integrated re-annotation approach for functional predictions of hypothetical proteins in microbial genomes

机译:一种用于微生物基因组中假设蛋白质功能预测的整合重注释方法

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摘要

Proteins play a major role in biochemical and biophysical features of living organisms and the knowledge of their function is crucial in the development of new drugs, agriculture productivity improvement, biofuel production and several industrial products derived biologically. In current annotation approach, functional prediction of unknown proteins such as hypothetical proteins present in various genomes is a challenging task to the biological community. This incomplete genome information causes gaps in the knowledge especially in the area of drug discovery and metabolic engineering. Hence, an integrated genome-scale re-annotation has been evolved, which is the most promising approach to predict the functions of unknown or hypothetical proteins. In this approach, along with BLAST many other tools output will be integrated for better understanding the function of a given protein sequence. In this review, we describe the integrated re-annotation approach methods that will be helpful in systems level study of microorganisms.
机译:蛋白质在活生物体的生化和生物物理特征中起着重要作用,其功能知识对于新药的开发,农业生产率的提高,生物燃料的生产以及几种生物衍生的工业产品至关重要。在当前的注释方法中,未知蛋白质(例如存在于各种基因组中的假设蛋白质)的功能预测对于生物界来说是一项艰巨的任务。这种不完整的基因组信息会导致知识缺口,尤其是在药物发现和代谢工程领域。因此,已经发展了整合的基因组规模的重新注释,这是预测未知或假设蛋白质功能的最有前途的方法。在这种方法中,将与BLAST一起集成许多其他工具,以更好地了解给定蛋白质序列的功能。在这篇综述中,我们描述了集成的重新注释方法,这些方法将有助于系统级的微生物研究。

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