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脆弱拟杆菌代谢中吡咯啉-5-羧酸还原酶的同系物及 2-酮戊二酸:铁氧还蛋白氧化还原酶对毕赤酵母蛋白新功能的影响及其对甲硝唑和氨曲南药敏性的影响

New functions of pirin proteins and a 2-ketoglutarate: Ferredoxin oxidoreductase ortholog in Bacteroides fragilis metabolism and their impact on antimicrobial susceptibility to metronidazole and amixicile.

机构信息

Department of Microbiology and Immunology, Brody School of Medicine at East Carolina University, Greenville, North Carolina, USA.

USDA Agricultural Research Service, Peoria, Illinois, USA.

出版信息

Microbiologyopen. 2024 Aug;13(4):e1429. doi: 10.1002/mbo3.1429.

DOI:10.1002/mbo3.1429
PMID:39109824
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC11304471/
Abstract

The understanding of how central metabolism and fermentation pathways regulate antimicrobial susceptibility in the anaerobic pathogen Bacteroides fragilis is still incomplete. Our study reveals that B. fragilis encodes two iron-dependent, redox-sensitive regulatory pirin protein genes, pir1 and pir2. The mRNA expression of these genes increases when exposed to oxygen and during growth in iron-limiting conditions. These proteins, Pir1 and Pir2, influence the production of short-chain fatty acids and modify the susceptibility to metronidazole and amixicile, a new inhibitor of pyruvate: ferredoxin oxidoreductase in anaerobes. We have demonstrated that Pir1 and Pir2 interact directly with this oxidoreductase, as confirmed by two-hybrid system assays. Furthermore, structural analysis using AlphaFold2 predicts that Pir1 and Pir2 interact stably with several central metabolism enzymes, including the 2-ketoglutarate:ferredoxin oxidoreductases Kor1AB and Kor2CDAEBG. We used a series of metabolic mutants and electron transport chain inhibitors to demonstrate the extensive impact of bacterial metabolism on metronidazole and amixicile susceptibility. We also show that amixicile is an effective antimicrobial against B. fragilis in an experimental model of intra-abdominal infection. Our investigation led to the discovery that the kor2AEBG genes are essential for growth and have dual functions, including the formation of 2-ketoglutarate via the reverse TCA cycle. However, the metabolic activity that bypasses the function of Kor2AEBG following the addition of phospholipids or fatty acids remains undefined. Overall, our study provides new insights into the central metabolism of B. fragilis and its regulation by pirin proteins, which could be exploited for the development of new narrow-spectrum antimicrobials in the future.

摘要

中央代谢和发酵途径如何调节厌氧病原体脆弱拟杆菌的抗菌敏感性仍不完全清楚。我们的研究表明,脆弱拟杆菌编码两个铁依赖性、氧化还原敏感的调节蛋白 pirin 基因,pir1 和 pir2。当暴露于氧气中和在缺铁条件下生长时,这些基因的 mRNA 表达增加。这些蛋白质,Pir1 和 Pir2,影响短链脂肪酸的产生,并改变对甲硝唑和氨甲酰唑的敏感性,氨甲酰唑是一种新的厌氧丙酮酸:铁氧还蛋白氧化还原酶抑制剂。我们已经证明,Pir1 和 Pir2 与该氧化还原酶直接相互作用,这一点通过双杂交系统测定得到了证实。此外,使用 AlphaFold2 进行结构分析预测,Pir1 和 Pir2 与几种中央代谢酶稳定相互作用,包括 2-酮戊二酸:铁氧还蛋白氧化还原酶 Kor1AB 和 Kor2CDAEBG。我们使用一系列代谢突变体和电子传递链抑制剂来证明细菌代谢对甲硝唑和氨甲酰唑敏感性的广泛影响。我们还表明,氨甲酰唑在腹腔感染的实验模型中对脆弱拟杆菌是一种有效的抗菌药物。我们的研究发现,kor2AEBG 基因对生长是必需的,具有双重功能,包括通过逆三羧酸 (TCA) 循环形成 2-酮戊二酸。然而,在添加磷脂或脂肪酸后,绕过 Kor2AEBG 功能的代谢活性仍未定义。总的来说,我们的研究提供了脆弱拟杆菌中央代谢及其 pirin 蛋白调节的新见解,这可能为未来开发新的窄谱抗菌药物提供依据。

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