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The chaperone DnaK promotes the emergence and accumulation of antibiotic-resistant clones through its ATPase activity in Riemerella anatipestifer

delete2025-07-03
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OA
AI
F
Fang Guo
C
Chunfeng Shi
黄丽 (Li Huang)
Y
Yizhou Yao
L
Liping Qiao
朱德康 cover
朱德康 (Dekang Zhu)
M
Mingshu Wang
贾仁勇 cover
贾仁勇 (Renyong Jia)
陈舜 cover
陈舜 (Shun Chen)
赵新新 (Xinxin Zhao)
Y
Ying Wu
张沙秋 (Shaqiu Zhang)
L
Ling Zhang
F
Friedrich Götz
程安春 cover
程安春 (Anchun Cheng)
刘马峰 cover
刘马峰 (Mafeng Liu)
DOI:10.1016/j.psj.2025.105513delete
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Abstract

Abstract

En 中文
The rapid emergence of antibiotic-resistant bacteria has become a global concern. In particular, the overuse of antibiotics in the breeding industry has accelerated the emergence of antibiotic-resistant bacteria, but the mechanisms driving this phenomenon are not fully understood. Here, using the multidrug-resistant bacterium R. anatipestifer as a proof of concept, we show that the chaperone DnaK promoted the emergence and accumulation of antibiotic-resistant clones. Compared to the ∆dnaK, the wild type produced more resistant clones under antibiotic stress and accelerated the accumulation of resistance mutations under the second antibiotic stress. Importantly, it was indicated that the broad DnaK molecular chaperone inhibitor, telaprevir (TP), effectively decreases the frequency of antibiotics resistant (FOR) in R. anatipestifer through inhibiting the ATPase activation of the DnaK molecular chaperone. Taken together, this study suggested that the chaperone DnaK can be used as a target for drug design to control the emergence and accumulation of antibiotic-resistant clones in R. anatipestifer and reduce the risk of antibiotic resistance in clinical treatment.
Keywords:
Riemerella anatipestifer
DnaK
Antibiotic resistance mutations

Journal

Poultry Science cover
Poultry Science
IF:
4.2
Papers:
1.6W
Citations:
4.1W

Organization

No organization information available