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2024Comment on: Co-occurrence of the cephalosporinase cepA and carbapenemase cfiA genes in a Bacteroides fragilis Division II strain: an unexpected finding, Journal of Antimicrobial Chemotherapy, 6:dkae427. ⟨10.1093/jac/dkae427⟩.
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2024Adaptation mechanisms of Clostridioides difficile to auranofin and its impact on human gut microbiota., NPJ Biofilms Microbiomes 2024 Sep; 10(1): 86.
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2024Physiological role and complex regulation of O2-reducing enzymes in the obligate anaerobe Clostridioides difficile., mBio 2024 Aug; (): e0159124.
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2024Spores of Clostridioides difficile are toxin delivery vehicles., Commun Biol 2024 Jul; 7(1): 839.
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2024From ubiquity to specificity: The diverse functions of bacterial thioredoxin systems., Environ Microbiol 2024 Jun; 26(6): e16668.
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2024The multiplicity of thioredoxin systems meets the specific lifestyles of Clostridia., PLoS Pathog 2024 Feb; 20(2): e1012001.
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2024A monoclonal antibody collection for C. difficile typing ?, Gut Pathog 2024 Jan; 16(1): 4.
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2024Anti-S-layer monoclonal antibodies impact Clostridioides difficile physiology., Gut Microbes 2024 ; 16(1): 2301147.
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2023Extracellular succinate induces spatially organized biofilm formation in Clostridioides difficile., Biofilm 2023 Dec; 5(): 100125.
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2023The absence of surface D-alanylation, localized on lipoteichoic acid, impacts the Clostridioides difficile way of life and antibiotic resistance, Frontiers in Microbiology, 2023, 14, ⟨10.3389/fmicb.2023.1267662⟩.
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2023The cell wall lipoprotein CD1687 acts as a DNA binding protein during deoxycholate-induced biofilm formation in Clostridioides difficile., NPJ Biofilms Microbiomes 2023 May; 9(1): 24.
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2023Prevalence of Foodborne Viruses in Berries Harvested in Canada., Foods 2023 Feb; 12(4): .
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2023The absence of surface D-alanylation, localized on lipoteichoic acid, impacts the Clostridioides difficile way of life and antibiotic resistance., Front Microbiol 2023 ; 14(): 1267662.
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2022In-depth characterization of the Clostridioides difficile phosphoproteome to identify Ser/Thr kinase substrates, Mol Cell Proteomics .
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2022c-di-AMP signaling is required for bile salt resistance, osmotolerance, and long-term host colonization by Clostridioides difficile., Sci Signal 2022 Sep; 15(750): eabn8171.
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2022A Highly Specific Holin-Mediated Mechanism Facilitates the Secretion of Lethal Toxin TcsL in Paeniclostridiumsordellii., Toxins (Basel) 2022 Feb; 14(2): .
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2021In vivo commensal control of Clostridioides difficile virulence., Cell Host Microbe 2021 Nov; 29(11): 1693-1708.e7.
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2021Predictive regulatory and metabolic network models for systems analysis of Clostridioides difficile., Cell Host Microbe 2021 Nov; 29(11): 1709-1723.e5.
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2021Wolf in Sheep’s Clothing: Clostridioides difficile Biofilm as a Reservoir for Recurrent Infections., Microorganisms 2021 Sep; 9(9): .
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2021Metabolic adaption to extracellular pyruvate triggers biofilm formation in Clostridioides difficile., ISME J 2021 Jun; (): .
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2021Ser/Thr Kinase-Dependent Phosphorylation of the Peptidoglycan Hydrolase CwlA Controls Its Export and Modulates Cell Division in Clostridioides difficile., mBio 2021 May; 12(3): .
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2021Identification of RNAs bound by Hfq reveals widespread RNA partners and a sporulation regulator in the human pathogen Clostridioides difficile., RNA Biol 2021 Feb; (): 1-22.
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2020How the Anaerobic Enteropathogen Clostridioides difficile Tolerates Low O2 Tensions., mBio 2020 Sep; 11(5): .
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1992Mutagenesis of the Bacillus subtilis “-12, -24” promoter of the levanase operon and evidence for the existence of an upstream activating sequence, J. Mol. Biol. 1992 Jul;226(1):85-99.
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1992An enzyme with type IV prepilin peptidase activity is required to process components of the general extracellular protein secretion pathway of Klebsiella oxytoca, Mol. Microbiol. 1992 Mar;6(6):751-60.
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1991Neisseria gonorrhoeae prepilin export studied in Escherichia coli, J. Bacteriol. 1991 Dec;173(23):7589-98.
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1991The Bacillus subtilis sigL gene encodes an equivalent of sigma 54 from gram-negative bacteria, Proc. Natl. Acad. Sci. U.S.A. 1991 Oct;88(20):9092-6.
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1991Positive and negative regulation controlling expression of the sac genes in Bacillus subtilis, Res. Microbiol. 1991 Sep-Oct;142(7-8):757-64.
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1991The transcriptional regulator LevR of Bacillus subtilis has domains homologous to both sigma 54- and phosphotransferase system-dependent regulators, Proc. Natl. Acad. Sci. U.S.A. 1991 Mar;88(6):2212-6.
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1991Control of pilus expression in Neisseria gonorrhoeae as an original system in the family of two-component regulators, Mol. Microbiol. 1991 Jan;5(1):137-48.
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1990Levanase operon of Bacillus subtilis includes a fructose-specific phosphotransferase system regulating the expression of the operon, J. Mol. Biol. 1990 Aug;214(3):657-71.
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1987Characterization of the levanase gene of Bacillus subtilis which shows homology to yeast invertase, Mol. Gen. Genet. 1987 Jun;208(1-2):177-84.