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Compositions and activities of bacterial flora in the gastrointestinal tract significantly influence the metabolism, health, and disease of host humans and animals. These enteric bacteria can switch between aerobic and anaerobic growth if oxygen tension becomes limited. Interestingly, the switching mechanism is important for preventing reactive oxygen species (ROS) production and antibiotic tolerance. Studies have also shown that intracellular and extracellular sulfide molecules are involved in this switching control, although the mechanism is not fully clarified. Here, we found that YgaV, a sulfide-responsive transcription factor SqrR/BigR homolog, responded to sulfide compounds in vivo and in vitro to control anaerobic respiratory gene expression. YgaV also responded to HO scavenging in the enteric bacterium . Although the wild-type (WT) showed increased antibiotic tolerance under HS-atmospheric conditions, the mutant did not show such a phenotype. Additionally, antibiotic sensitivity was higher in the mutant than in the WT of both types in the presence and absence of exogenous HS. These results, therefore, indicated that YgaV-dependent transcriptional regulation was responsible for maintaining redox homeostasis, ROS scavenging, and antibiotic tolerance.
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http://dx.doi.org/10.3390/antiox11122359 | DOI Listing |
Int J Antimicrob Agents
September 2025
Unity Health Toronto, St. Joseph's Health Centre, Toronto, Ontario, Canada; Department of Laboratory Medicine and Pathobiology, University of Toronto, Toronto, Ontario, Canada; Unity Health Toronto, Li Ka Shing Knowledge Institute, Toronto, Ontario, Canada. Electronic address: Gregory.German@unityhe
Chronic urinary tract infections are persistent bacterial infections with the potential to drive antibiotic resistance. Like other persistent bacterial infections, intracellular bacterial reservoirs and biofilm formation hinder the clearance of pathogens despite long courses of antibiotic therapy. New strategies for treatment of these persistent infections are needed.
View Article and Find Full Text PDFRSC Chem Biol
September 2025
Department of Medicine, Perelman School of Medicine, University of Pennsylvania Philadelphia PA USA.
The bacterial DNA damage (SOS) response promotes DNA repair, DNA damage tolerance, and survival in the setting of genotoxic stress, including stress induced by antibiotics. In , translesion DNA synthesis can be fulfilled by Y-family DNA polymerases, including DNA polymerase IV (DinB). DinB features a more open active site and lacks proofreading ability, promoting error-prone replication.
View Article and Find Full Text PDFJ Med Microbiol
September 2025
Department of Microbiology, Meiji Pharmaceutical University, Tokyo, Japan.
Biofilms are a primary form of device-associated infections and typically exhibit high tolerance to antimicrobial agents. In biofilms formed by multiple microbial species, microorganisms may show even greater tolerance, complicating treatment. There is evidence that meropenem (MEPM) tolerance in is increased in dual-species biofilms with , and effective treatments have not been established.
View Article and Find Full Text PDFACS Synth Biol
September 2025
Engineering Research Center of Western Resource Innovation Medicine Green Manufacturing, Ministry of Education, School of Chemical Engineering, Northwest University, Xi'an 710127, China.
The environmental resistance exhibited by microorganisms is concerned with their ability to withstand and adapt to an array of detrimental environmental conditions, with their survival and reproductive success being threatened. Within the realm of biotechnology, which emphasizes stress resistance, a critical role in bacterial adaptive strategies to environmental fluctuations is assumed to be in the periplasmic space. An innovative methodology to augment bacterial tolerance to stress by employing a mucin-mimetic collagen analogue, designated as S1552 (which is secreted into the periplasmic compartment), is introduced by this investigation.
View Article and Find Full Text PDFMicrobiologyopen
October 2025
Department of Agronomy, National Taiwan University, Taipei, Taiwan.
Currently, there is an increasing use of whole-genome sequencing (WGS) studies to investigate the molecular taxonomy, metabolic properties, enzyme capabilities, and bioactive substances of lactic acid bacteria (LAB) species. In this study, the genome of strain Pediococcus pentosaceus BBS1 was sequenced using the Illumina HiSeq. 2500 platform to determine its classification, annotate its main features, and evaluate its safety characteristics.
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