Institute of Fundamental Medicine and Biology, Kazan Federal University, 18 Kremlyovskaya St., 420008 Kazan, Russia.
Arbuzov Institute of Organic and Physical Chemistry, FRC Kazan Scientific Center of RAS, Arbuzov Str. 8, 420088 Kazan, Russia.
Int J Mol Sci. 2024 Jul 17;25(14):7822. doi: 10.3390/ijms25147822.
Mining of organophosphorous (OPs)-degrading bacterial enzymes in collections of known bacterial strains and in natural biotopes are important research fields that lead to the isolation of novel OP-degrading enzymes. Then, implementation of strategies and methods of protein engineering and nanobiotechnology allow large-scale production of enzymes, displaying improved catalytic properties for medical uses and protection of the environment. For medical applications, the enzyme formulations must be stable in the bloodstream and upon storage and not susceptible to induce iatrogenic effects. This, in particular, includes the nanoencapsulation of bioscavengers of bacterial origin. In the application field of bioremediation, these enzymes play a crucial role in environmental cleanup by initiating the degradation of OPs, such as pesticides, in contaminated environments. In microbial cell configuration, these enzymes can break down chemical bonds of OPs and usually convert them into less toxic metabolites through a biotransformation process or contribute to their complete mineralization. In their purified state, they exhibit higher pollutant degradation efficiencies and the ability to operate under different environmental conditions. Thus, this review provides a clear overview of the current knowledge about applications of OP-reacting enzymes. It presents research works focusing on the use of these enzymes in various bioremediation strategies to mitigate environmental pollution and in medicine as alternative therapeutic means against OP poisoning.
从已知的细菌菌株的集合和自然生物区系中挖掘有机磷 (OPs) 降解细菌酶是一项重要的研究领域,可导致新型 OP 降解酶的分离。然后,实施蛋白质工程和纳米生物技术的策略和方法允许大规模生产显示出用于医学用途和环境保护的改进催化特性的酶。对于医学应用,酶制剂必须在血液中稳定,并且在储存和不受诱导医源性作用的影响。这特别包括细菌来源的生物清除剂的纳米封装。在生物修复的应用领域中,这些酶通过启动受污染环境中农药等 OPs 的降解,在环境清理中起着至关重要的作用。在微生物细胞结构中,这些酶可以破坏 OPs 的化学键,并通常通过生物转化过程将其转化为毒性较小的代谢物,或有助于其完全矿化。在其纯化状态下,它们表现出更高的污染物降解效率和在不同环境条件下运行的能力。因此,本综述提供了关于 OP 反应酶应用的当前知识的清晰概述。它介绍了专注于在各种生物修复策略中使用这些酶来减轻环境污染以及在医学中作为 OP 中毒的替代治疗手段的研究工作。