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Functional characterization of a TerC family protein of Riemerella anatipestifer in manganese detoxification and virulence

delete2024-01-24
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OA
AI
Q
Qinyuan Chen
F
Fang Guo
黄丽 (Li Huang)
M
Mengying Wang
C
Chunfeng Shi
S
Shutong Zhang
Y
Yizhou Yao
汪铭书 cover
汪铭书 (Mingshu Wang)
朱德康 cover
朱德康 (Dekang Zhu)
贾仁勇 cover
贾仁勇 (Renyong Jia)
陈舜 cover
陈舜 (Shun Chen)
赵新新 (Xinxin Zhao)
Q
Qiao Yang
Y
Ying Wu
张沙秋 (Shaqiu Zhang)
田兵 (Bin Tian)
黄娟 cover
黄娟 (Juan Huang)
欧旭敏 cover
欧旭敏 (Xumin Ou)
Q
Qun Gao
孙迪 (Di Sun)
L
Ling Zhang
Y
Yu He
Z
Zhen Wu
F
Friedrich Götz
程安春 cover
程安春 (Anchun Cheng)
刘马峰 cover
刘马峰 (Mafeng Liu) *
DOI:10.1128/aem.01350-23delete
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Abstract

Abstract

En 中文
Manganese (Mn) is an essential element for bacteria, but the overload of manganese is toxic. In a previous study, we showed that the cation diffusion facilitator protein MetA and the resistance-nodulation-division efflux pump MetB are responsible for Mn efflux in the bacterial pathogen Riemerella anatipestifer CH-1. However, whether this bacterium encodes additional manganese efflux proteins is unclear. In this study, we show that R. anatipestifer CH-1 encodes a tellurium resistance C (TerC) family protein with low similarity to other characterized TerC family proteins. Compared to the wild type (WT), the terC mutant of R. anatipestifer CH-1 (triangle terC) is sensitive to Mn(II) intoxication. The ability of TerC to export manganese is higher than that of MetB but lower than that of MetA. Consistently, terC deletion (triangle terC) led to intracellular accumulation of Mn2+ under excess manganese conditions. Further study showed that triangle terC was more sensitive than the WT to the oxidant hypoclorite but not to hydrogen peroxide. Mutagenesis studies showed that the mutant at amino acid sites of Glu116 (E116), Asp122 (D122), Glu245 (E245) Asp248 (D248), and Asp254 (D254) may be involved in the ability of TerC to export manganese. The transcription of terC was upregulated under excess manganese and downregulated under iron-limited conditions. However, this was not dependent on the manganese metabolism regulator MetR. In contrast to a strain lacking the manganese efflux pump MetA or MetB, the terC mutant is attenuated in virulence in a duckling model of infection due to increased sensitivity to duck serum. Finally, comparative analysis showed that homologs of TerC are distributed across the bacterial kingdom, suggesting that TerC exerts a conserved manganese efflux function.
Keywords:
R. anatipestifer
TerC
manganese detoxification
virulence

Journal

Applied and Environmental Microbiology cover
Applied and Environmental Microbiology
IF:
3.7
Papers:
2.4W
Citations:
8.9W

Organization