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Engineered whole-cell biocatalyst-based detoxification and detection of neurotoxic organophosphate compounds.

机译:基于全细胞生物催化剂的工程化解毒和神经毒性有机磷酸酯化合物的检测。

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摘要

The development of efficient tools is required for the eco-friendly detoxification and effective detection of neurotoxic organophosphates (OPs). Although enzymes have received significant attention as biocatalysts because of their high specific activity, the uneconomic and labor-intensive processes of enzyme production and purification make their broad use in practical applications difficult. Because whole-cell systems offer several advantages compared with free enzymes, including high stability, a reduced purification requirement, and low preparation cost, they have been suggested as promising biocatalysts for the detoxification and detection of OPs. To develop efficient whole-cell biocatalysts with enhanced activity and a broad spectrum of substrate specificity, several factors have been considered, namely the selected strains, the chosen OP-hydrolyzing enzymes, where enzymes are localized in a cell, and which enhancer will assist the expression, function, and folding of the enzyme. In this article, we review the current investigative progress in the development of engineered whole-cell biocatalysts with excellent OP-hydrolyzing activity, a broad spectrum of substrate specificity, and outstanding stability for the detoxification and detection of OPs.
机译:需要开发有效的工具,以实现生态友好的排毒和有效检测神经毒性有机磷酸酯(OPs)。尽管由于酶的高比活性而使酶作为生物催化剂受到了广泛的关注,但是酶生产和纯化的不经济和劳动强度大的过程使其难以在实际应用中广泛使用。由于全细胞系统与游离酶相比具有多种优势,包括高稳定性,降低的纯化要求和较低的制备成本,因此,它们被认为是有前途的生物催化剂,可用于OP的解毒和检测。为了开发具有增强的活性和广谱的底物特异性的高效全细胞生物催化剂,已经考虑了几个因素,即选定的菌株,选定的OP水解酶,其中的酶位于细胞中以及哪种增强剂将有助于酶的表达,功能和折叠。在本文中,我们综述了工程化全细胞生物催化剂开发中的最新研究进展,该催化剂具有出色的OP水解活性,广泛的底物特异性以及出色的OP解毒和检测稳定性。

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