Nick P. Cianciotto
Affiliations: | Integrated Graduate Program in the Life Sciences | Northwestern University, Evanston, IL |
Area:
Microbiology BiologyGoogle:
"Nick Cianciotto"
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Publications
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Grigoryeva LS, Cianciotto NP. (2021) Human macrophages utilize a wide range of pathogen recognition receptors to recognize Legionella pneumophila, including Toll-Like Receptor 4 engaging Legionella lipopolysaccharide and the Toll-like Receptor 3 nucleic-acid sensor. Plos Pathogens. 17: e1009781 |
Nas MY, Gabell J, Cianciotto NP. (2021) Effectors of the Stenotrophomonas maltophilia Type IV Secretion System Mediate Killing of Clinical Isolates of Pseudomonas aeruginosa. Mbio. 12: e0150221 |
Grigoryeva LS, Rehman S, White RC, et al. (2021) Assay for Assessing Mucin Binding to Bacteria and Bacterial Proteins. Bio-Protocol. 11: e3933 |
Portlock TJ, Tyson JY, Dantu SC, et al. (2020) Structure, Dynamics and Cellular Insight Into Novel Substrates of the Type II Secretion System. Frontiers in Molecular Biosciences. 7: 112 |
Rehman S, Grigoryeva LS, Richardson KH, et al. (2020) Structure and functional analysis of theĀ Legionella pneumophila chitinase ChiA reveals a novel mechanism of metal-dependent mucin degradation. Plos Pathogens. 16: e1008342 |
White RC, Truchan HK, Zheng H, et al. (2019) Type II Secretion Promotes Bacterial Growth within the -Containing Vacuole in Infected Amoebae. Infection and Immunity |
Nas MY, White RC, DuMont AL, et al. (2019) Encodes a VirB/D4 Type IV Secretion System That Modulates Apoptosis in Human Cells and Promotes Competition Against Heterologous Bacteria Including . Infection and Immunity |
White RC, Cianciotto NP. (2019) Assessing the impact, genomics and evolution of type II secretion across a large, medically important genus: the Legionella type II secretion paradigm. Microbial Genomics |
White RC, Gunderson FF, Tyson JY, et al. (2018) Type II Secretion-Dependent Aminopeptidase LapA and Acyltransferase PlaC Are Redundant for Nutrient Acquisition during Intracellular Infection of Amoebas. Mbio. 9 |
DuMont AL, Cianciotto NP. (2017) Stenotrophomonas maltophilia Serine Protease StmPr1 Induces Matrilysis, Anoikis, and Protease-Activated Receptor-2 Activation in Human Lung Epithelial Cells. Infection and Immunity |