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外排泵和孔蛋白通过抑制羟基自由基的产生增强细菌对酚类化合物的耐受性。

Efflux Pumps and Porins Enhance Bacterial Tolerance to Phenolic Compounds by Inhibiting Hydroxyl Radical Generation.

作者信息

Sui Xinyue, Guo Likun, Bao Zixian, Xian Mo, Zhao Guang

机构信息

State Key Laboratory of Microbial Technology and Institute of Microbial Technology, Shandong University, Qingdao 266237, China.

CAS Key Lab of Biobased Materials, Qingdao Institute of Bioenergy and Bioprocess Technology, Chinese Academy of Sciences, Qingdao 266101, China.

出版信息

Microorganisms. 2025 Jan 18;13(1):202. doi: 10.3390/microorganisms13010202.

Abstract

Phenolic compounds are industrially versatile chemicals that have been successfully produced in microbial cell factories. Unfortunately, most phenolic compounds are highly toxic to cells in specific cellular environments or above a particular concentration because they form a complex with iron and promote hydroxyl radical production in Fenton reactions, resulting in the ferroptosis of cells. Here, we demonstrated that overexpression of efflux pumps and porins, including porins LamB and OmpN, and efflux pumps EmrAB, MdtABC, and SrpB, can enhance phloroglucinol (PG) tolerance by inhibiting the generation of hydroxyl radicals. In addition, LamB and OmpN overexpression improved the bioproduction of PG. Furthermore, efflux pumps and porins can enhance bacterial tolerance to various phenolic compounds, including phenol, catechol, resorcinol, pyrogallol, and 2-naphthol. LamB and MdtABC confer a generalized tolerance to phenols. However, EmrAB, OmpN, and SrpB showed inconsistent effects of bacterial tolerance to different phenolic compounds. Our results will theoretically support the construction of phenolic compound-tolerant bacteria strains, which should be more efficient in the biosynthesis of phenols.

摘要

酚类化合物是工业上用途广泛的化学品,已在微生物细胞工厂中成功生产。不幸的是,大多数酚类化合物在特定细胞环境中或高于特定浓度时对细胞具有高毒性,因为它们与铁形成复合物并在芬顿反应中促进羟基自由基的产生,导致细胞发生铁死亡。在此,我们证明了包括孔蛋白LamB和OmpN以及外排泵EmrAB、MdtABC和SrpB在内的外排泵和孔蛋白的过表达可以通过抑制羟基自由基的产生来增强间苯三酚(PG)耐受性。此外,LamB和OmpN的过表达提高了PG的生物合成。此外,外排泵和孔蛋白可以增强细菌对各种酚类化合物的耐受性,包括苯酚、邻苯二酚、间苯二酚、连苯三酚和2-萘酚。LamB和MdtABC赋予对酚类的普遍耐受性。然而,EmrAB、OmpN和SrpB对不同酚类化合物的细菌耐受性表现出不一致的影响。我们的结果将在理论上支持构建对酚类化合物具有耐受性的细菌菌株,这在酚类生物合成中应该更有效。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/36c7/11767505/a748719f06c3/microorganisms-13-00202-g001.jpg

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