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Communication

CosR Regulation of perR Transcription for the Control of Oxidative Stress Defense in Campylobacter jejuni

1
Division of Environmental Health Sciences, School of Public Health, University of Minnesota, Minneapolis, MN 55455, USA
2
Department of Food and Animal Biotechnology, Research Institute for Agriculture and Life Sciences, Seoul National University, Seoul 08826, Korea
3
Department of Agricultural Biotechnology, Research Institute for Agriculture and Life Sciences, Seoul National University, Seoul 08826, Korea
4
Center for Food Bioconvergence, Seoul National University, Seoul 08826, Korea
*
Authors to whom correspondence should be addressed.
The authors equally contributed.
Current address: Food Microbiology Division/Food Safety Evaluation Department, National Institute of Food and Drug Safety Evaluation, Osong 28159, Korea.
Microorganisms 2021, 9(6), 1281; https://doi.org/10.3390/microorganisms9061281
Submission received: 5 May 2021 / Revised: 7 June 2021 / Accepted: 9 June 2021 / Published: 11 June 2021
(This article belongs to the Section Molecular Microbiology and Immunology)

Abstract

Oxidative stress resistance is an important mechanism to sustain the viability of oxygen-sensitive microaerophilic Campylobacter jejuni. In C. jejuni, gene expression associated with oxidative stress defense is modulated by PerR (peroxide response regulator) and CosR (Campylobacter oxidative stress regulator). Iron also plays an important role in the regulation of oxidative stress, as high iron concentrations reduce the transcription of perR. However, little is known about how iron affects the transcription of cosR. The level of cosR transcription was increased when the defined media MEMα (Minimum Essential Medium) was supplemented with ferrous (Fe2+) and ferric (Fe3+) iron and the Mueller–Hinton (MH) media was treated with an iron chelator, indicating that iron upregulates cosR transcription. However, other divalent cationic ions, such as Zn2+, Cu2+, Co2+, and Mn2+, did not affect cosR transcription, suggesting that cosR transcription is regulated specifically by iron. Interestingly, the level of perR transcription was increased when CosR was overexpressed. The positive regulation of perR transcription by CosR was observed both in the presence or in the absence of iron. The results of the electrophoretic mobility shift assay showed that CosR directly binds to the perR promoter. DNase I footprinting assays revealed that the CosR binding site in the perR promoter overlaps with the PerR box. In the study, we demonstrated that cosR transcription is increased in iron-rich conditions, and CosR positively regulates the transcription of PerR, another important regulator of oxidative stress defense in C. jejuni. These results provide new insight into how C. jejuni regulates oxidative stress defense by coordinating the transcription of perR and cosR in response to iron.
Keywords: Campylobacter; oxidative stress; CosR; PerR Campylobacter; oxidative stress; CosR; PerR

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MDPI and ACS Style

Park, M.; Hwang, S.; Ryu, S.; Jeon, B. CosR Regulation of perR Transcription for the Control of Oxidative Stress Defense in Campylobacter jejuni. Microorganisms 2021, 9, 1281. https://doi.org/10.3390/microorganisms9061281

AMA Style

Park M, Hwang S, Ryu S, Jeon B. CosR Regulation of perR Transcription for the Control of Oxidative Stress Defense in Campylobacter jejuni. Microorganisms. 2021; 9(6):1281. https://doi.org/10.3390/microorganisms9061281

Chicago/Turabian Style

Park, Myungseo, Sunyoung Hwang, Sangryeol Ryu, and Byeonghwa Jeon. 2021. "CosR Regulation of perR Transcription for the Control of Oxidative Stress Defense in Campylobacter jejuni" Microorganisms 9, no. 6: 1281. https://doi.org/10.3390/microorganisms9061281

APA Style

Park, M., Hwang, S., Ryu, S., & Jeon, B. (2021). CosR Regulation of perR Transcription for the Control of Oxidative Stress Defense in Campylobacter jejuni. Microorganisms, 9(6), 1281. https://doi.org/10.3390/microorganisms9061281

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