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CueO Possesses Copper Detoxification Activity Linking Bacterial Virulence and Drug Resistance in Brucella

毒力 布鲁氏菌 细胞内 生物 微生物学 细胞内寄生虫 细胞生物学 细菌 多铜氧化酶 周质间隙 突变体 布鲁氏菌病 化学 序列母题 生物化学 发病机制
作者
Mengru Su,Zhufangyue Chen,Pengcheng Gao,Xinmin Yan,Jinlei Chen,Junyun Tuo,Yujia Hao,Yujia Fang,Feijie Zhi,Yuefeng Chu
出处
期刊:The FASEB Journal [Wiley]
卷期号:40 (15)
标识
DOI:10.1096/fj.202602204r
摘要

ABSTRACT Brucellosis is a zoonotic disease caused by Brucella spp. that poses a significant threat to human health. Copper resistance is a key determinant of the virulence of many intracellular pathogens, including those expressing the multicopper oxidase CueO. However, the role of CueO in Brucella remains poorly understood. In this study, bioinformatics tools were used to perform sequence homology comparison and conserved domain analysis of the CueO protein. Unmarked cueO deletion mutant and complemented strain of Brucella were constructed using homologous recombination technology. Subsequently, multiple experiments were carried out, including in vitro copper tolerance tests, RAW264.7 macrophage intracellular survival assays, in vivo virulence detection in mice, antibiotic susceptibility tests (AST), and so on. We found that CueO contains highly conserved domains across bacteria (motifs 1–10). Notably, the Brucella homolog contains only motifs 2, 3, 5, 6, and 10; it remains highly conserved within the genus. Despite this reduced domain composition, CueO is important for Brucella to resist copper toxicity. Notably, CueO contributes to intracellular survival in RAW264.7 macrophages and to the maintenance of copper homeostasis in Brucella . Deletion of cueO attenuated bacterial virulence in a mouse model. In addition, CueO influences bacterial susceptibility to doxycycline and levofloxacin. Overall, our results indicate that, despite lacking several typical domains, CueO retains critical functionality and links copper detoxification to intracellular survival, virulence, and antibiotic resistance. These findings enhance our understanding of CueO function and provide new insights into the pathogenesis of Brucella .
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