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一些细菌漆酶的同源建模、对接和序列分析,以揭示其对木质素生物降解的酶特异性。

homology modeling, docking and sequence analysis of some bacterial laccases to unravel enzymatic specificity towards lignin biodegradation.

作者信息

Mahuri Monalisa, Paul Manish, Sahu Sumanta Kumar, Thatoi Hrudayanath

机构信息

Department of Biotechnology, Maharaja Sriram Chandra BhanjaDeo University, Baripada, Odisha, India.

Department of Bioinformatics, Central University of South Bihar, Gaya, India.

出版信息

J Biomol Struct Dyn. 2023 Jul-Aug;41(12):5757-5775. doi: 10.1080/07391102.2022.2096117. Epub 2022 Jul 15.

Abstract

Laccase is a delignifying enzyme that belongs to the oxidoreductase family, and it has long been investigated as a pretreatment agent in biofuel production. In this study, amino acid sequences of five bacterial laccases from , , , and have been retrieved from UniProtKB for sequence alignment, phylogenetic analysis using MEGA 7.0 and 3 D structure prediction by homology modeling in SWISS-MODEL. Multiple sequence alignment between all the bacterial laccase sequences revealed a similar structural fold, although the overall protein sequence varied greatly with the substrate binding sites. Further molecular docking in AutoDock Vina and MD stimulation (MDS) in GROMACS for those modelled enzymes were performed considering both apo and ligand bound structures considering both apo and its ligand bound form. Investigation of molecular interaction utilizing docking of five bacterial laccases with three substrates (ABTS, DMP and Guaiacol) revealed that ABTS with laccase had the highest binding energy of -7.00 kcal/mol. In the current MDS investigation, bacterial laccases demonstrated greater binding and substrate energy in the ligand bound complex than in the apo form for ABTS, DMP and Guaiacol. In most cases of bacterial laccase, MDS revealed that DMP bound complex was more stable within an average RMSD value lower than 0.5 nm throughout 100 ns time scale. Thus, studies undertaken in this work will be useful in determining the stable enzyme-substrate complex which further might improve the enzymatic catalysis of bacterial laccases for lignin breakdown and biofuel generation.

摘要

漆酶是一种属于氧化还原酶家族的木质素降解酶,长期以来一直被作为生物燃料生产中的预处理剂进行研究。在本研究中,从UniProtKB中检索了来自[具体菌株1]、[具体菌株2]、[具体菌株3]、[具体菌株4]和[具体菌株5]的五种细菌漆酶的氨基酸序列,用于序列比对、使用MEGA 7.0进行系统发育分析以及在SWISS-MODEL中通过同源建模进行三维结构预测。所有细菌漆酶序列之间的多序列比对显示出相似的结构折叠,尽管总体蛋白质序列因底物结合位点而有很大差异。考虑到无配体和配体结合形式,对这些建模酶在AutoDock Vina中进行了进一步的分子对接,并在GROMACS中进行了分子动力学模拟(MDS)。利用五种细菌漆酶与三种底物(ABTS、DMP和愈创木酚)的对接研究分子相互作用,结果表明ABTS与[具体菌株]漆酶的结合能最高,为-7.00 kcal/mol。在当前的MDS研究中,对于ABTS、DMP和愈创木酚,细菌漆酶在配体结合复合物中的结合能和底物能比无配体形式更高。在大多数细菌漆酶的情况下,MDS显示DMP结合复合物在整个100 ns时间尺度内平均RMSD值低于0.5 nm时更稳定。因此,本工作中进行的研究将有助于确定稳定的酶-底物复合物,这可能进一步改善细菌漆酶对木质素分解和生物燃料生成的酶促催化作用。

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