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由鲁佛霉素产生菌产生粪卟啉原III、胆绿素和胆红素。

Production of copropophyrin III, biliverdin and bilirubin by the rufomycin producer, .

作者信息

Perez-Ortiz Gustavo, Sidda John D, Peate Jessica, Ciccarelli Davide, Ding Yaoyu, Barry Sarah M

机构信息

Department of Chemistry, Faculty of Natural & Mathematical Sciences, King's College London, London, United Kingdom.

出版信息

Front Microbiol. 2023 Mar 16;14:1092166. doi: 10.3389/fmicb.2023.1092166. eCollection 2023.

Abstract

Heme is best known for its role as a versatile prosthetic group in prokaryotic and eukaryotic proteins with diverse biological functions including gas and electron transport, as well as a wide array of redox chemistry. However, free heme and related tetrapyrroles also have important roles in the cell. In several bacterial strains, heme biosynthetic precursors and degradation products have been proposed to function as signaling molecules, ion chelators, antioxidants and photoprotectants. While the uptake and degradation of heme by bacterial pathogens is well studied, less is understood about the physiological role of these processes and their products in non-pathogenic bacteria. are slow growing soil bacteria known for their extraordinary capacity to produce complex secondary metabolites, particularly many clinically used antibiotics. Here we report the unambiguous identification of three tetrapyrrole metabolites from heme metabolism, coproporphyrin III, biliverdin and bilirubin, in culture extracts of the rufomycin antibiotic producing DSM41673. We propose that biliverdin and bilirubin may combat oxidative stress induced by nitric oxide production during rufomycin biosynthesis, and indicate the genes involved in their production. This is, to our knowledge, the first report of the production of all three of these tetrapyrroles by a .

摘要

血红素最为人所知的是它作为一种通用的辅基,存在于具有多种生物学功能(包括气体和电子传递以及一系列氧化还原化学反应)的原核和真核蛋白质中。然而,游离血红素和相关的四吡咯在细胞中也具有重要作用。在几种细菌菌株中,血红素生物合成前体和降解产物被认为具有信号分子、离子螯合剂、抗氧化剂和光保护剂的功能。虽然细菌病原体对血红素的摄取和降解已得到充分研究,但对于这些过程及其产物在非致病细菌中的生理作用了解较少。[细菌名称]是生长缓慢的土壤细菌,以其产生复杂次生代谢产物(特别是许多临床使用的抗生素)的非凡能力而闻名。在此,我们报告了在产生鲁佛霉素的[细菌名称]DSM41673的培养提取物中,明确鉴定出血红素代谢产生的三种四吡咯代谢产物,即粪卟啉原III、胆绿素和胆红素。我们提出,胆绿素和胆红素可能在鲁佛霉素生物合成过程中对抗一氧化氮产生所诱导的氧化应激,并指出了参与其产生的基因。据我们所知,这是[细菌名称]产生所有这三种四吡咯的首次报道。

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