Thomas M. Gallagher
Affiliations: | Loyola University Chicago, Chicago, IL, United States |
Area:
Microbiology BiologyWebsite:
https://ssom.luc.edu/microbio/people/faculty/thomasgallagherphd/Google:
"Thomas Gallagher"Bio:
Parents
Sign in to add mentorRoland R. Rueckert | grad student | 1987 | UW Madison (Cell Biology Tree) | |
(Synthesis and assembly of nodaviruses) |
Children
Sign in to add traineeJennifer N. Wingard | grad student | Loyola University Chicago | |
Daniel N. Lewicki | grad student | 2003 | Loyola University Chicago |
Edward B. Thorp | grad student | 2004 | Loyola University Chicago |
Ana Shulla | grad student | 2011 | Loyola University Chicago |
Taylor Heald-Sargent | grad student | 2014 | Loyola University Chicago |
Anna M. Mielech | grad student | 2014 | Loyola University Chicago |
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Publications
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Pfaender S, Mar KB, Michailidis E, et al. (2020) LY6E impairs coronavirus fusion and confers immune control of viral disease. Nature Microbiology |
Qing E, Gallagher T. (2020) SARS Coronavirus Redux. Trends in Immunology. 41: 271-273 |
Qing E, Hantak M, Perlman S, et al. (2020) Distinct Roles for Sialoside and Protein Receptors in Coronavirus Infection. Mbio. 11 |
Qing E, Hantak MP, Galpalli GG, et al. (2020) Evaluating MERS-CoV Entry Pathways. Methods in Molecular Biology (Clifton, N.J.). 2099: 9-20 |
Russell AE, Sneider A, Witwer KW, et al. (2019) Biological membranes in EV biogenesis, stability, uptake, and cargo transfer: an ISEV position paper arising from the ISEV membranes and EVs workshop. Journal of Extracellular Vesicles. 8: 1684862 |
Hantak MP, Qing E, Earnest JT, et al. (2018) Tetraspanins: Architects of viral entry and exit platforms. Journal of Virology |
Perlman S, Gallagher T. (2018) Not your usual tRNA synthetase: hWARS serves as an enterovirus entry factor. The Journal of Clinical Investigation |
Nidetz NF, Gallagher TM, Wiethoff CM. (2017) Inhibition of type I interferon responses by adenovirus serotype-dependent Gas6 binding. Virology. 515: 150-157 |
Park JE, Gallagher T. (2017) Lipidation increases antiviral activities of coronavirus fusion-inhibiting peptides. Virology. 511: 9-18 |
Earnest JT, Hantak MP, Li K, et al. (2017) The tetraspanin CD9 facilitates MERS-coronavirus entry by scaffolding host cell receptors and proteases. Plos Pathogens. 13: e1006546 |