Brian K. Coombes, Ph.D.

Affiliations: 
2002 McMaster University, Hamilton, ON, Canada 
Area:
Microbiology Biology, Pathology
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"Brian Coombes"

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James Mahony grad student 2002 McMaster University
 (Cellular and molecular host -pathogen interactions during Chlamydia pneumoniae infection.)
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Publications

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Tsai CN, Massicotte MA, MacNair CR, et al. (2023) Screening under infection-relevant conditions reveals chemical sensitivity in multidrug resistant invasive non-typhoidal (iNTS). Rsc Chemical Biology. 4: 600-612
Popov G, Fiebig-Comyn A, Syriste L, et al. (2022) Distinct Molecular Features of NleG Type 3 Secreted Effectors Allow for Different Roles during Citrobacter rodentium Infection in Mice. Infection and Immunity. e0050522
Elhenawy W, Hordienko S, Gould S, et al. (2021) High-throughput fitness screening and transcriptomics identify a role for a type IV secretion system in the pathogenesis of Crohn's disease-associated Escherichia coli. Nature Communications. 12: 2032
Chau NYE, Pérez-Morales D, Elhenawy W, et al. (2020) (p)ppGpp-dependent regulation of the nucleotide hydrolase PpnN confers complement resistance in serovar Typhimurium. Infection and Immunity
Weber BS, De Jong AM, Guo ABY, et al. (2020) Genetic and Chemical Screening in Human Blood Serum Reveals Unique Antibacterial Targets and Compounds against Klebsiella pneumoniae. Cell Reports. 32: 107927
Tsai CN, MacNair CR, Cao MPT, et al. (2020) Targeting Two-Component Systems Uncovers a Small-Molecule Inhibitor of Salmonella Virulence. Cell Chemical Biology
Culp EJ, Waglechner N, Wang W, et al. (2020) Evolution-guided discovery of antibiotics that inhibit peptidoglycan remodelling. Nature
Carfrae LA, MacNair CR, Brown CM, et al. (2019) Mimicking the human environment in mice reveals that inhibiting biotin biosynthesis is effective against antibiotic-resistant pathogens. Nature Microbiology
Shaler CR, Elhenawy W, Coombes BK. (2019) The Unique Lifestyle of Crohn's Disease-Associated Adherent Invasive Escherichia coli. Journal of Molecular Biology
Caminero A, McCarville JL, Galipeau HJ, et al. (2019) Duodenal bacterial proteolytic activity determines sensitivity to dietary antigen through protease-activated receptor-2. Nature Communications. 10: 1198
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