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毛调控的脲酶有助于……的环境适应。 (原文中“of”后面缺少具体内容)

Fur-regulated urease contributes to the environmental adaptation of .

作者信息

Wang Junyang, Fu Peishuai, He Xinquan, Liu Yuqi, Zuo Yuxin, Wei Zhiyan, Wang Yao, Yang Yantao, Li Changfu, Shen Xihui, Zhu Lingfang

机构信息

State Key Laboratory for Crop Stress Resistance and High-Efficiency Production, Shaanxi Key Laboratory of Agricultural and Environmental Microbiology, College of Life Sciences, Northwest A&F University, Yangling, Shaanxi, China.

出版信息

Microbiol Spectr. 2025 Apr;13(4):e0275624. doi: 10.1128/spectrum.02756-24. Epub 2025 Feb 25.

Abstract

Urease converts urea into ammonia and carbon dioxide, providing a nitrogen and carbon source for microbial growth and serving as an important mechanism for human bacterial pathogens to survive in acidic conditions, which can be regulated by many factors. As a global regulator, the ferric uptake regulator (Fur) regulates a series of genes and pathways involved in many different cellular processes and the virulence of the enteric bacterium (). However, whether Fur regulates the urease activity in was still unknown. In this study, we found that urease is positively regulated by Fur in response to manganese ions (Mn), and this regulation by Fur is mediated by specific recognition of the promoter region of urease in . Furthermore, urease is induced by Mn via Fur under low nutrient conditions. Moreover, we provided evidence that urease plays an important role in acid and osmotic stress resistance, biofilm formation, and virulence of . Our findings provide insights into understanding the regulatory mechanism and multiple functions of urease in .IMPORTANCEUrease catalyzes the breakdown of urea into ammonia and carbamate, which are widely distributed among bacterial species and play an important role as an important acid resistance system and virulence factor. In most bacterial species, urease expression is tightly regulated in response to environmental cues such as nitrogen status, pH, growth phase, substrate availability, or transcriptional regulators. In this study, we found that urease from is positively regulated by Fur in response to Mn under low nutrient conditions, which functions to combat acid and osmotic stress and enhance biofilm formation, and plays a crucial role in virulence. Importantly, this is the first demonstration of a direct role for Fur and Mn in regulating urease expression in . This study provides a comprehensive understanding of the regulatory mechanisms and functions of urease from .

摘要

脲酶将尿素转化为氨和二氧化碳,为微生物生长提供氮源和碳源,是人类细菌病原体在酸性条件下生存的重要机制,且该机制受多种因素调控。作为一种全局调节因子,铁摄取调节蛋白(Fur)调控一系列参与许多不同细胞过程及肠道细菌毒力的基因和途径。然而,Fur是否调节该菌中的脲酶活性仍不清楚。在本研究中,我们发现脲酶在响应锰离子(Mn)时受到Fur的正调控,且Fur的这种调控是通过特异性识别该菌中脲酶的启动子区域介导的。此外,在低营养条件下,脲酶通过Fur被锰诱导。而且,我们提供的证据表明脲酶在该菌的耐酸和渗透压应激、生物膜形成及毒力方面发挥重要作用。我们的研究结果为理解该菌中脲酶的调控机制和多种功能提供了见解。

重要性

脲酶催化尿素分解为氨和氨基甲酸酯,广泛存在于细菌物种中,作为重要的耐酸系统和毒力因子发挥重要作用。在大多数细菌物种中,脲酶的表达会根据诸如氮状态、pH、生长阶段、底物可用性或转录调节因子等环境线索受到严格调控。在本研究中,我们发现该菌的脲酶在低营养条件下响应锰时受到Fur的正调控,其作用是对抗酸和渗透压应激并增强生物膜形成,且在毒力方面起关键作用。重要的是,这是首次证明Fur和锰在调节该菌脲酶表达中具有直接作用。本研究全面了解了该菌脲酶的调控机制和功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f173/11960103/93c2f8212d05/spectrum.02756-24.f001.jpg

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