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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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2024Spores of Clostridioides difficile are toxin delivery vehicles., Commun Biol 2024 Jul; 7(1): 839.
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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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2024SpoIVA is an essential morphogenetic protein for the formation of heat- and lysozyme-resistant spores in Clostridium sporogenes NBRC 14293., Front Microbiol 2024 ; 15(): 1338751.
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2023Extracellular succinate induces spatially organized biofilm formation in Clostridioides difficile., Biofilm 2023 Dec; 5(): 100125.
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2023Regulation of Clostridial Toxin Gene Expression: A Pasteurian Tradition., Toxins (Basel) 2023 Jun; 15(7): .
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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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2023Elucidating dynamic anaerobe metabolism with HRMAS 13C NMR and genome-scale modeling., Nat Chem Biol 2023 May; 19(5): 556-564.
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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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2022Core-, pan- and accessory genome analyses of Clostridium neonatale: insights into genetic diversity., Microb Genom 2022 May; 8(5): .
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2022The blueprint for building a biofilm the Clostridioides difficile way., Curr Opin Microbiol 2022 Apr; 66(): 39-45.
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2022Bacteroides thetaiotaomicron uses a widespread extracellular DNase to promote bile-dependent biofilm formation., Proc Natl Acad Sci U S A 2022 02; 119(7):e2111228119. doi: 10.1073/pnas.2111228119. .
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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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2021Cyclic Poly(α-peptoid)s by Lithium bis(trimethylsilyl)amide (LiHMDS)-Mediated Ring-Expansion Polymerization: Simple Access to Bioactive Backbones., J Am Chem Soc 2021 03; 143(10): 3697-3702.
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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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2020Type I toxin-antitoxin systems contribute to the maintenance of mobile genetic elements in Clostridioides difficile., Commun Biol 2020 Nov; 3(1): 718.
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2020How the Anaerobic Enteropathogen Clostridioides difficile Tolerates Low O2 Tensions., mBio 2020 Sep; 11(5): .
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2020Clostridioides difficile para-Cresol Production Is Induced by the Precursor para-Hydroxyphenylacetate., J Bacteriol 2020 Aug; 202(18): .
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2020Genome-Wide Transcription Start Site Mapping and Promoter Assignments to a Sigma Factor in the Human Enteropathogen Clostridioides difficile., Front Microbiol 2020 ; 11(): 1939.
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2019An RNA-Binding Protein Secreted by a Bacterial Pathogen Modulates RIG-I Signaling., Cell Host Microbe 2019 Dec; 26(6): 823-835.e11.
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2019The Ser/Thr Kinase PrkC Participates in Cell Wall Homeostasis and Antimicrobial Resistance in Clostridium difficile., Infect Immun 2019 08; 87(8): .
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2019CotL, a new morphogenetic spore coat protein of Clostridium difficile., Environ Microbiol 2019 03; 21(3): 984-1003.
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2018Clostridium difficile biofilm: remodeling metabolism and cell surface to build a sparse and heterogeneously aggregated architecture, Front Microbiol. 2018 Sep 12;9:2084. doi: 10.3389/fmicb.2018.02084. eCollection 2018..
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2018Discovery of new type I toxin-antitoxin systems adjacent to CRISPR arrays in Clostridium difficile, Nucleic Acids Res. 2018 May;46(9):4733-4751.
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2017High prevalence and genetic diversity of large phiCD211/phiCDIF1296T-like prophages in Clostridioides difficile, Appl. Environ. Microbiol. 2017 Nov;.
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2016What’s a SNP between friends: The influence of single nucleotide polymorphisms on virulence and phenotypes of Clostridium difficile strain 630 and derivatives, Virulence 2017 Aug;8(6):767-781.
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2016A Recombination Directionality Factor Controls the Cell Type-Specific Activation of σK and the Fidelity of Spore Development in Clostridium difficile, PLoS Genet. 2016 Sep;12(9):e1006312.
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2015Function of the CRISPR-Cas System of the Human Pathogen Clostridium difficile, MBio 2015;6(5).
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2014Inter- and intraspecies transfer of a Clostridium difficile conjugative transposon conferring resistance to MLSB, Microb. Drug Resist. 2014 Dec;20(6):555-60.
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2014Integration of metabolism and virulence in Clostridium difficile, Res. Microbiol. 2015 May;166(4):375-83.
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2014Pleiotropic role of the RNA chaperone protein Hfq in the human pathogen Clostridium difficile, J. Bacteriol. 2014 Sep;196(18):3234-48.
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2014Multidisciplinary analysis of a nontoxigenic Clostridium difficile strain with stable resistance to metronidazole, Antimicrob. Agents Chemother. 2014 Aug;58(8):4957-60.
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2014The flagellin FliC of Clostridium difficile is responsible for pleiotropic gene regulation during in vivo infection, PLoS ONE 2014;9(5):e96876.
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2014Expanding the RpoS/σS-network by RNA sequencing and identification of σS-controlled small RNAs in Salmonella, PLoS ONE 2014;9(5):e96918.
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2014The LexA regulated genes of the Clostridium difficile, BMC Microbiol. 2014;14:88.
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2014Sequence similarity of Clostridium difficile strains by analysis of conserved genes and genome content is reflected by their ribotype affiliation, PLoS ONE 2014;9(1):e86535.
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2013Characterization of the SigD regulon of C. difficile and its positive control of toxin production through the regulation of tcdR, PLoS ONE 2013;8(12):e83748.
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2013Genome-wide analysis of cell type-specific gene transcription during spore formation in Clostridium difficile, PLoS Genet. 2013;9(10):e1003756.
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2013Genome-wide identification of regulatory RNAs in the human pathogen Clostridium difficile, PLoS Genet. 2013 May;9(5):e1003493.
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2012Global transcriptional control by glucose and carbon regulator CcpA in Clostridium difficile, Nucleic Acids Res. 2012 Nov;40(21):10701-18.
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2012Secretion of Clostridium difficile toxins A and B requires the holin-like protein TcdE, PLoS Pathog. 2012;8(6):e1002727.
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2011The anti-sigma factor TcdC modulates hypervirulence in an epidemic BI/NAP1/027 clinical isolate of Clostridium difficile, PLoS Pathog. 2011 Oct;7(10):e1002317.
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2010Characterization of Acp, a peptidoglycan hydrolase of Clostridium perfringens with N-acetylglucosaminidase activity that is implicated in cell separation and stress-induced autolysis, J. Bacteriol. 2010 May;192(9):2373-84.
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2009Effects of subinhibitory concentrations of antibiotics on colonization factor expression by moxifloxacin-susceptible and moxifloxacin-resistant Clostridium difficile strains, Antimicrob. Agents Chemother. 2009 Dec;53(12):5155-62.
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2006Isolation of RNA polymerase from Clostridium difficile and characterization of glutamate dehydrogenase and rRNA gene promoters in vitro and in vivo, J. Bacteriol. 2006 Jan;188(1):96-102.
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2005Transcription activation of a UV-inducible Clostridium perfringens bacteriocin gene by a novel sigma factor, Mol. Microbiol. 2005 Feb;55(4):1196-206.
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2005BotR/A and TetR are alternative RNA polymerase sigma factors controlling the expression of the neurotoxin and associated protein genes in Clostridium botulinum type A and Clostridium tetani, Mol. Microbiol. 2005 Jan;55(1):235-49.
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2004The spatial organization of the VirR boxes is critical for VirR-mediated expression of the perfringolysin O gene, pfoA, from Clostridium perfringens, J. Bacteriol. 2004 Jun;186(11):3321-30.
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2004Organization and regulation of the neurotoxin genes in Clostridium botulinum and Clostridium tetani, Anaerobe 2004 Apr;10(2):93-100.
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1994Type IV prepilin peptidase gene of Neisseria gonorrhoeae MS11: presence of a related gene in other piliated and nonpiliated Neisseria strains, J. Bacteriol. 1994 Mar;176(5):1323-31.
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1992Role of pilA, an essential regulatory gene of Neisseria gonorrhoeae, in the stress response, J. Bacteriol. 1992 Sep;174(18):5978-81.
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1992PulO, a component of the pullulanase secretion pathway of Klebsiella oxytoca, correctly and efficiently processes gonococcal type IV prepilin in Escherichia coli, Mol. Microbiol. 1992 Jul;6(14):1887-94.
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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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