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Structural elucidation of SrtA enzyme in Enterococcus faecalis: an emphasis on screening of potential inhibitors against the biofilm formation

机译:粪肠球菌中SrtA酶的结构解析:强调筛选潜在的抑制生物膜形成的抑制剂

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摘要

Enterococcus faecalis is a pathogenic Gram-positive bacterium, which mainly infects humans through urinary tract infections. SrtA is an essential enzyme for survival of E. faecalis, and inhibition of this particular enzyme will reduce the virulence of biofilm formation. It is proved to be associated with the microbial surface protein embedded signal transduction mechanism and promising as a suitable antimicrobial drug target for E. faecalis. The present work gives an inclusive description of SrtA isolated from E. faecalis through computational and experimental methodologies. For exploring the mechanism of SrtA and to screen potential leads against £ faecalis, we have generated three-dimensional models through homology modeling. The 3D model showed conformational stability over time, confirming the quality of the starting 3D model. Large scale 100 ns molecular dynamics simulations show the intramolecular changes occurring in SrtA, and multiple conformations of structure based screening elucidate potential leads against this pathogen. Experimental results showed that the screened compounds are active showing anti-microbial and anti-biofilm activity, as SrtA is known to play an important role in E. faecalis biofilm formation. Experimental results also suggest that SrtA specific screened compounds have better anti-biofilm activity than the available inhibitors. Therefore, we believe that development of these compounds would be an impetus to design the novel chief SrtA inhibitors against E. faecalis.
机译:粪肠球菌是一种致病性革兰氏阳性细菌,主要通过尿路感染感染人类。 SrtA是粪肠球菌生存所必需的酶,抑制该特定酶将降低生物膜形成的毒力。它被证明与微生物表面蛋白嵌入的信号转导机制有关,并有望作为粪肠球菌的合适抗微生物药物靶标。本工作通过计算和实验方法从粪肠球菌中分离出了SrtA。为了探索SrtA的机制并筛选粪便的潜在潜在生物,我们通过同源性建模生成了三维模型。 3D模型随时间显示构象稳定性,从而确认了起始3D模型的质量。大规模的100 ns分子动力学模拟显示SrtA中发生了分子内变化,并且基于结构的筛选的多种构象阐明了针对这种病原体的潜在优势。实验结果表明,所筛选的化合物具有显示抗微生物和抗生物膜活性的活性,因为已知SrtA在粪肠球菌生物膜形成中起着重要作用。实验结果还表明,SrtA特异性筛选化合物比可用抑制剂具有更好的抗生物膜活性。因此,我们认为开发这些化合物将是设计新型抗粪肠球菌的主要SrtA抑制剂的动力。

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  • 来源
    《Molecular BioSystems》 |2014年第7期|1775-1789|共15页
  • 作者单位

    Computer Aided Drug Design and Molecular Modeling Lab, Department of Bioinformatics, Alagappa University, Karaikudi-630 004, Tamil Nadu, India;

    Crustacean Molecular Biology & Genomics Lab, Department of Animal Health and Management, Alagappa University, Karaikudi-630 004, Tamil Nadu, India;

    Crustacean Molecular Biology & Genomics Lab, Department of Animal Health and Management, Alagappa University, Karaikudi-630 004, Tamil Nadu, India;

    Toxicology Division, Central Drug Research Institute, Lucknow-226 001,Uttar Pradesh, India;

    Computer Aided Drug Design and Molecular Modeling Lab, Department of Bioinformatics, Alagappa University, Karaikudi-630 004, Tamil Nadu, India;

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