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卤酸脱卤酶 IndB1 与 2-氯烷酸底物相互作用分析。

Analysis on the Interaction of Haloacid Dehalogenase from IndB1 with 2-Chloroalkanoic Acid Substrates.

机构信息

Biochemistry Research Division, Faculty of Mathematics and Natural Sciences, Bandung Institute of Technology, Bandung 40132, Indonesia.

Center for Pulp and Paper, Ministry of Industry, Bandung 40258, Indonesia.

出版信息

ScientificWorldJournal. 2022 Oct 8;2022:1579194. doi: 10.1155/2022/1579194. eCollection 2022.

Abstract

Recently, haloacid dehalogenases have gained a lot of interest because of their potential applications in bioremediation and synthesis of chemical products. The haloacid dehalogenase gene from IndB1 () has been isolated, expressed, and Bcfd1 enzyme activity towards monochloroacetic acid has been successfully studied. However, the structure, enantioselectivity, substrate range, and essential residues of Bcfd1 have not been elucidated. This research performed computational studies to predict the Bcfd1 protein structure and analyse the interaction of Bcfd1 towards several haloacid substrates to comprehend their enantioselectivity and substrates' range. Structure prediction revealed that Bcfd1 protein consist of two domains. The main domain consists of seven -sheets connected by six -helices and four 3-helices forming a Rossmannoid fold. On the other hand, the cap domain consists of five -sheets connected by five -helices. The docking simulation showed that 2-chloroalkanoic acids bind to the active site of Bcfd1 with docking energy decreases as the length of their alkyl chain increases. The docking simulation also indicated that the docking energy differences of two enantiomers of 2-chloroalkanoic acids substrates were not significant. Further analysis revealed the role of Met1, Asp2, Cys33, and Lys204 residues in orienting the carboxylic group of 2-chloroalkanoic acids in the active site of this enzyme through hydrogen bonds. This research proved that computational studies could be used to figure out the effect of substrates enantiomer and length of carbon skeleton to Bcfd1 affinity toward 2-chloroalkanoic acids.

摘要

最近,由于卤代酸脱卤酶在生物修复和化学产品合成方面的潜在应用,它们引起了人们的极大兴趣。已分离、表达了 IndB1()中的卤代酸脱卤酶基因,并成功研究了 Bcfd1 对一氯乙酸的酶活性。然而,Bcfd1 的结构、对映选择性、底物范围和必需残基尚未阐明。本研究进行了计算研究,以预测 Bcfd1 蛋白结构,并分析 Bcfd1 与几种卤代酸底物的相互作用,以了解它们的对映选择性和底物范围。结构预测表明,Bcfd1 蛋白由两个结构域组成。主要结构域由七个连接六个 -螺旋和四个 3-螺旋的 -折叠组成。另一方面,帽结构域由五个 -折叠组成。对接模拟表明,2-氯烷酸与 Bcfd1 的活性位点结合,随着其烷基链的增长,对接能降低。对接模拟还表明,2-氯烷酸两种对映体的对接能差异不显著。进一步的分析表明,Met1、Asp2、Cys33 和 Lys204 残基在通过氢键将 2-氯烷酸的羧酸基团定向到该酶的活性位点中起作用。本研究证明,计算研究可用于确定底物对映体和碳骨架长度对 Bcfd1 对 2-氯烷酸亲和力的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5e4a/9569217/37816348a1e8/TSWJ2022-1579194.001.jpg

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