Identification of coastal pesticide pollutants as potent inhibitors of Bacillus pasteurii urease mediated calcium carbonate precipitation: a computational approach.

IF 2.7 3区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY Journal of Biomolecular Structure & Dynamics Pub Date : 2024-11-01 Epub Date: 2023-09-10 DOI:10.1080/07391102.2023.2252089
Aparna Ganapathy Vilasam Sreekala, Krishna Kant Gupta, Vinod Kumar Nathan
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Abstract

Microbially induced calcite precipitation (MICP) through urease enzyme has attained a lot of recognition in various fields of civil engineering and geotechnology for stabilizing the strength of soil and various concrete materials. The activity of urease has been found to be affected by various factors like temperature, substrate concentrations, pH of the medium, presence of inhibitors, etc. Through this study, the outcome of the interaction of pesticides (commonly found in Indian coastal regions) on Bacillus pasteurii urease, a major organism reported for MICP studies has been investigated in silico. The results from the study revealed that the enzyme has higher interactions of -4.1, -3.2, and -3.4 kJ/mol with common pesticides like dichloro diphenyl dichloro ethane(DDD), dichloro diphenyl trichloroe thane (DDT), and methyl parathion of organochlorides and organophosphates class. From the molecular dynamics simulation analysis, complex 1 (DDD -receptor) has been found to have the highest and more compact structure followed by methyl parathion -receptor. Prime MM-GBSA analysis also revealed the highest binding energy of -27.8 kcal/mol with the protein and DDD. Thus, it can be inferred from the current study that pesticides, particularly, DDD, DDT, and methyl parathion present in the coastal areas may have an impact on urease. This interaction can result in the inhibition of the urease activity of B. pasteurii, thus preventing the biomineralization process. This study would be the first report on the computational approach to understanding the interaction of prominent pesticides on the coastal region and B. pasteurii urease.Communicated by Ramaswamy H. Sarma.

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将沿海农药污染物鉴定为巴氏杀菌杆菌脲酶介导的碳酸钙沉淀的强效抑制剂:一种计算方法。
通过脲酶的微生物诱导方解石沉淀法(MICP)在土木工程和地质技术的各个领域获得了广泛认可,可用于稳定土壤和各种混凝土材料的强度。研究发现,脲酶的活性受温度、底物浓度、介质 pH 值、抑制剂存在等多种因素的影响。本研究对杀虫剂(常见于印度沿海地区)与巴氏杀菌脲酶(MICP 研究中的一种主要生物)之间的相互作用进行了硅学研究。研究结果表明,该酶与二氯二苯基二氯乙烷(DDD)、二氯二苯基三氯乙烷(DDT)和甲基对硫磷等有机氯和有机磷类常见杀虫剂的相互作用较高,分别为-4.1、-3.2 和-3.4 kJ/mol。分子动力学模拟分析发现,复合物 1(滴滴涕-受体)的结构最高、最紧凑,其次是甲基对硫磷-受体。主要的 MM-GBSA 分析还显示,蛋白质与滴滴涕的结合能最高,为 -27.8 kcal/mol。因此,从目前的研究中可以推断出,沿海地区存在的杀虫剂,特别是滴滴涕、滴滴涕和甲基对硫磷可能会对脲酶产生影响。这种相互作用会导致巴氏杀菌杆菌的尿素酶活性受到抑制,从而阻碍生物矿化过程。这项研究将是第一份通过计算方法了解沿海地区主要农药与巴氏杀菌杆菌脲酶相互作用的报告。
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来源期刊
Journal of Biomolecular Structure & Dynamics
Journal of Biomolecular Structure & Dynamics 生物-生化与分子生物学
CiteScore
8.90
自引率
9.10%
发文量
597
审稿时长
2 months
期刊介绍: The Journal of Biomolecular Structure and Dynamics welcomes manuscripts on biological structure, dynamics, interactions and expression. The Journal is one of the leading publications in high end computational science, atomic structural biology, bioinformatics, virtual drug design, genomics and biological networks.
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