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控制 Fur 硝酸盐呼吸调节因子 NarP 和 NarL 在沙门氏菌中的作用。

Control by Fur of the nitrate respiration regulators NarP and NarL in Salmonella enterica.

机构信息

Department of Genetics and Microbiology, Faculty of Biosciences, Autonomous University of Barcelona, Bellaterra, Spain.

出版信息

Int Microbiol. 2010 Mar;13(1):33-9. doi: 10.2436/20.1501.01.108.

Abstract

Anaerobic metabolism is controlled by several transcriptional regulators, including ArcA, Fnr, NarP, and NarL, with the Fnr and ArcA proteins sensitive to the cell's redox status. Specifically, the two-component ArcAB system is activated in response to the oxidation state of membrane-bound quinones, which are the central electron carriers of respiration. Fnr, by contrast, directly senses cellular oxidation status through the [4Fe-4S] cluster present in its own structure. In this study, a third additional redox-associated pathway that controls the nitrate respiration regulators NarL and NarP was identified. The results showed that, in Salmonella enterica, the expression of these two transcriptional regulators is under the control of Fur, a metalloregulator that senses the presence of Fe2+ and regulates the homeostasis of this cation inside the cell. Thus, the Fur- Fe2+ complex increases the expression of narL and represses that of narP. Furthermore, studies of S. enteric mutants defective in the Fur-regulated sRNA RfrA and RfrB showed that those sRNA control both narP and narL expression. These results confirm Fur as a global regulator based on its involvement not only in iron uptake and detoxification but also in the control of nitrate/nitrite respiration by sensing cellular redox status.

摘要

厌氧代谢受多种转录调节因子控制,包括 ArcA、Fnr、NarP 和 NarL,其中 Fnr 和 ArcA 蛋白对细胞的氧化还原状态敏感。具体来说,双组分 ArcAB 系统响应膜结合醌的氧化状态而被激活,而膜结合醌是呼吸作用的中心电子载体。相比之下,Fnr 通过其自身结构中存在的 [4Fe-4S] 簇直接感知细胞的氧化状态。在本研究中,确定了第三种控制硝酸盐呼吸调节因子 NarL 和 NarP 的额外氧化还原相关途径。结果表明,在沙门氏菌中,这两个转录调节因子的表达受 Fur 调控,Fur 是一种金属调节因子,可感知 Fe2+的存在,并调节细胞内该阳离子的内稳态。因此,Fur-Fe2+ 复合物增加了 narL 的表达并抑制了 narP 的表达。此外,对 Fur 调控的 sRNA RfrA 和 RfrB 缺陷的沙门氏菌突变体的研究表明,这些 sRNA 同时控制 narP 和 narL 的表达。这些结果证实了 Fur 作为一种全局调节因子的作用,不仅参与铁摄取和解毒,还通过感知细胞氧化还原状态来控制硝酸盐/亚硝酸盐呼吸。

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