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首页> 外文期刊>Genomics & Informatics >Mining the Proteome of Fusobacterium nucleatum subsp. nucleatum ATCC 25586 for Potential Therapeutics Discovery: An In Silico Approach
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Mining the Proteome of Fusobacterium nucleatum subsp. nucleatum ATCC 25586 for Potential Therapeutics Discovery: An In Silico Approach

机译:核酸核梭菌亚种蛋白质组的挖掘核ATCC 25586用于潜在治疗药物的发现:计算机方法

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The plethora of genome sequence information of bacteria in recent times has ushered in many novel strategies for antibacterial drug discovery and facilitated medical science to take up the challenge of the increasing resistance of pathogenic bacteria to current antibiotics. In this study, we adopted subtractive genomics approach to analyze the whole genome sequence of the Fusobacterium nucleatum, a human oral pathogen having association with colorectal cancer. Our study divulged 1,499 proteins of F. nucleatum, which have no homolog's in human genome. These proteins were subjected to screening further by using the Database of Essential Genes (DEG) that resulted in the identification of 32 vitally important proteins for the bacterium. Subsequent analysis of the identified pivotal proteins, using the Kyoto Encyclopedia of Genes and Genomes (KEGG) Automated Annotation Server (KAAS) resulted in sorting 3 key enzymes of F. nucleatum that may be good candidates as potential drug targets, since they are unique for the bacterium and absent in humans. In addition, we have demonstrated the three dimensional structure of these three proteins. Finally, determination of ligand binding sites of the 2 key proteins as well as screening for functional inhibitors that best fitted with the ligands sites were conducted to discover effective novel therapeutic compounds against F. nucleatum.
机译:近年来,细菌的基因组序列信息过多,为抗菌药物的发现引入了许多新颖的策略,并促进了医学界对病原菌对现有抗生素耐药性不断提高的挑战。在这项研究中,我们采用消减基因组学的方法来分析核杆菌Fusobacterium nucleatum的整个基因组序列,该菌是与结直肠癌相关的人类口腔病原体。我们的研究揭示了F. nucleatum的1,499种蛋白质,这些蛋白质在人类基因组中没有同源物。通过使用必需基因数据库(DEG)对这些蛋白质进行进一步筛选,从而鉴定出32种对细菌至关重要的蛋白质。随后,使用《京都基因与基因组百科全书》(KEGG)自动注释服务器(KAAS)对鉴定出的关键蛋白进行分析,结果归纳出了F. nucleatum的3种关键酶,它们可能是潜在的潜在药物靶标,因为它们对于细菌,人类中不存在。另外,我们已经证明了这三种蛋白质的三维结构。最后,进行了两个关键蛋白的配体结合位点的确定以及最适合该配体位点的功能抑制剂的筛选,以发现有效的新型抗核镰刀菌治疗化合物。

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