Leslie Goo, Ph.D.

Affiliations: 
2013 Global Health University of Washington, Seattle, Seattle, WA 
Area:
Virology Biology, Microbiology Biology, Immunology
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"Leslie Goo"

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Julie Overbaugh grad student 2013 University of Washington
 (Defining neutralizing antibody specificities that target diverse HIV-1 transmitted strains.)
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Publications

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Contreras M, Stuart JB, Levoir LM, et al. (2024) Defining the impact of flavivirus envelope protein glycosylation site mutations on sensitivity to broadly neutralizing antibodies. Mbio. e0304823
Kikawa C, Cartwright-Acar CH, Stuart JB, et al. (2023) The effect of single mutations in Zika virus envelope on escape from broadly neutralizing antibodies. Journal of Virology. e0141423
Lubow J, Levoir LM, Ralph DK, et al. (2023) Single B cell transcriptomics identifies multiple isotypes of broadly neutralizing antibodies against flaviviruses. Plos Pathogens. 19: e1011722
Kikawa C, Cartwright-Acar CH, Stuart JB, et al. (2023) The effect of single mutations in Zika virus envelope on escape from broadly neutralizing antibodies. Biorxiv : the Preprint Server For Biology
Lubow J, Levoir LM, Ralph DK, et al. (2023) Single B cell transcriptomics identifies multiple isotypes of broadly neutralizing antibodies against flaviviruses. Biorxiv : the Preprint Server For Biology
VanBlargan LA, Milutinovic P, Goo L, et al. (2021) Dengue virus serotype 1 conformational dynamics confers virus strain-dependent patterns of neutralization by polyclonal sera. Journal of Virology. JVI0095621
Levoir L, Goo L. (2020) A (class-)switch in the antibody response may distinguish primary from secondary dengue virus infection. Ebiomedicine. 56: 102790
Durham ND, Agrawal A, Waltari E, et al. (2019) Broadly neutralizing human antibodies against dengue virus identified by single B cell transcriptomics. Elife. 8
Durham ND, Agrawal A, Waltari E, et al. (2019) Author response: Broadly neutralizing human antibodies against dengue virus identified by single B cell transcriptomics Elife
Zanini F, Robinson ML, Croote D, et al. (2018) Virus-inclusive single-cell RNA sequencing reveals the molecular signature of progression to severe dengue. Proceedings of the National Academy of Sciences of the United States of America
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