Jamil-ur-Rahman Center for Genome Research, Dr. Panjwani Centre for Molecular Medicine and Drug Research, International Center for Chemical and Biological Sciences, University of Karachi, 75270 Karachi, Pakistan.
Microbiology & Biotechnology Research Lab, Department of Biotechnology, Fatima Jinnah Women University, 46000 Rawalpindi, Pakistan.
Biophys Chem. 2022 Jul;286:106806. doi: 10.1016/j.bpc.2022.106806. Epub 2022 Mar 24.
Microbial decolorization of azo dyes, mediated by an enzymatic mechanism is an intricate cost-effective, and eco-friendly treatment method of genotoxic azo pollutants. Scientists are on the constant lookout for microbes, enzymes, and mechanisms that could aid remediation of the environment at a fast pace. Alcaligenes faecalis subsp. phenolicus MB207 is one such bacteria, consisting of azoreductase (AzoR) and laccase/multicopper oxidase enzyme responsible for sulphonated mono-azo dye (Methyl orange) and di-azo dye (Congo red) degradation. AzoR degrades dyes by a ping-pong setup while multicopper oxidase achieves this through a non-specified radical approach. We have coupled experimental analysis with bioinformatics for deciphering intricacies of this procedure in tiny scale enzymatic machines of this biotope. The degradation assays were followed by molecular docking of the enzyme-substrate complexes. Key anchoring bonds were detected and mapped H-bonding, electron exchange, ionic interactions, as well as hydrophobic interactions, provided insights into dye-enzyme and NADH-enzyme binding. This study establishes a foundation of the molecular basis of dye interaction with azoR and multicopper oxidase in A. facealis subsp. phenolicus MB207.
微生物介导的偶氮染料脱色是一种复杂的、具有成本效益的、环保的遗传毒性偶氮污染物处理方法。科学家一直在寻找能够快速帮助修复环境的微生物、酶和机制。酚类红球菌亚种 MB207 就是这样一种细菌,它含有偶氮还原酶 (AzoR) 和漆酶/多铜氧化酶,负责降解磺化单偶氮染料(甲基橙)和二偶氮染料(刚果红)。AzoR 通过乒乓机制降解染料,而多铜氧化酶则通过非特定的自由基途径实现这一点。我们结合实验分析和生物信息学,在这个生物区系的微小尺度酶机器中对这一过程的复杂性进行了解码。降解分析后,对酶-底物复合物进行分子对接。检测到关键锚固键,并绘制氢键、电子交换、离子相互作用以及疏水性相互作用,深入了解染料-酶和 NADH-酶的结合。这项研究为 A. facealis subsp. phenolicus MB207 中偶氮还原酶和多铜氧化酶与染料相互作用的分子基础奠定了基础。