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Journal of Bacteriology|November 18, 2015
The Gonococcal NlpD Protein Facilitates Cell Separation by Activating Peptidoglycan Cleavage by AmiCElizabeth A Stohl, Jonathan D Lenz, Joseph P Dillard, et al.Molecular Microbiology|November 20, 2008
RecQ DNA helicase HRDC domains are critical determinants in Neisseria gonorrhoeae pilin antigenic variation and DNA repairMichael P Killoran, Petra L Kohler, Joseph P Dillard, et al.Biorxiv : the Preprint Server for Biology|July 14, 2025
Genetic transformation of <i>Gardnerella</i> species and characterization of vaginolysin and sialidase mutantsAmy K Klimowicz, Erin M Garcia, Kimberly K Jefferson, et al.Current Topics in Microbiology and Immunology|March 15, 2018
Secretion of Chromosomal DNA by the Neisseria gonorrhoeae Type IV Secretion SystemMelanie M Callaghan, Jan-Hendrik Heilers, Chris van der Does, et al.Journal of Bacteriology|June 24, 2008
Neisseria gonorrhoeae uses two lytic transglycosylases to produce cytotoxic peptidoglycan monomersKaren A Cloud-Hansen, Kathleen T Hackett, Daniel L Garcia, et al.Scientific Reports|March 2, 2016
nagZ Triggers Gonococcal Biofilm DisassemblySenthil V Bhoopalan, Andrzej Piekarowicz, Jonathan D Lenz, et al.Molecular Microbiology|October 12, 2007
A novel relaxase homologue is involved in chromosomal DNA processing for type IV secretion in Neisseria gonorrhoeaeWilmara Salgado-Pabón, Samta Jain, Nicholas Turner, et al.Molecular Microbiology|March 25, 2018
The low-molecular-mass, penicillin-binding proteins DacB and DacC combine to modify peptidoglycan cross-linking and allow stable Type IV pilus expression in Neisseria gonorrhoeaeKyle P Obergfell, Ryan E Schaub, Lauren L Priniski, et al.Molecular Microbiology|March 9, 2005
Neisseria gonorrhoeae secretes chromosomal DNA via a novel type IV secretion systemHolly L Hamilton, Nadia M Domínguez, Kevin J Schwartz, et al.Cellular Microbiology|September 7, 2016
Two lytic transglycosylases in Neisseria gonorrhoeae impart resistance to killing by lysozyme and human neutrophilsStephanie A Ragland, Ryan E Schaub, Kathleen T Hackett, et al.Pageof 8