Responses of Clostridia to oxygen: from detoxification to adaptive strategies.

Claire Morvan, Filipe Folgosa, Nicolas Kint, Miguel Teixeira, Isabelle Martin-Verstraete

Journal: Environmental microbiology 2021;23(8):4112-4125

PMID: 34245087

Abstract

Clostridia comprise bacteria of environmental, biotechnological and medical interest and many commensals of the gut microbiota. Because of their strictly anaerobic lifestyle, oxygen is a major stress for Clostridia. However, recent data showed that these bacteria can cope with O better than expected for obligate anaerobes through their ability to scavenge, detoxify and consume O . Upon O exposure, Clostridia redirect their central metabolism onto pathways less O -sensitive and induce the expression of genes encoding enzymes involved in O -reduction and in the repair of oxidized damaged molecules. While Faecalibacterium prausnitzii efficiently consumes O through a specific extracellular electron shuttling system requiring riboflavin, enzymes such as rubrerythrins and flavodiiron proteins with NAD(P)H-dependent O - and/or H O -reductase activities are usually encoded in other Clostridia. These two classes of enzymes play indeed a pivotal role in O tolerance in Clostridioides difficile and Clostridium acetobutylicum. Two main signalling pathways triggering O -induced responses have been described so far in Clostridia. PerR acts as a key regulator of the O - and/or reactive oxygen species-defence machinery while in C. difficile, σ , the sigma factor of the general stress response also plays a crucial role in O tolerance by controlling the expression of genes involved in O scavenging and repair systems.

© 2021 Society for Applied Microbiology and John Wiley & Sons Ltd.

Address: Laboratoire Pathogenèses des Bactéries Anaérobies, Institut Pasteur, Université de Paris, Paris, F-75015, France.; Instituto de Tecnologia Química e Biológica António Xavier, Universidade Nova de Lisboa, Av. da República, Oeiras, 2780-157, Portugal.; Institut Universitaire de France, Paris, France.
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