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Michael P Weekes

Showing results (41-50 of 82) with videos related to

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Elife|November 16, 2021
Efficacy of FFP3 respirators for prevention of SARS-CoV-2 infection in healthcare workersMark Ferris, Rebecca Ferris, Chris Workman, et al.
Nature Communications|December 8, 2023
Quantitative proteomics defines mechanisms of antiviral defence and cell death during modified vaccinia Ankara infectionJonas D Albarnaz, Joanne Kite, Marisa Oliveira, et al.
Cell Reports|May 18, 2017
A Temporal Proteomic Map of Epstein-Barr Virus Lytic Replication in B CellsIna Ersing, Luis Nobre, Liang Wei Wang, et al.
Cell Reports|October 7, 2020
Temporal Proteomic Analysis of Herpes Simplex Virus 1 Infection Reveals Cell-Surface Remodeling via pUL56-Mediated GOPC DegradationTimothy K Soh, Colin T R Davies, Julia Muenzner, et al.
Cell Host & Microbe|March 13, 2024
Human cytomegalovirus degrades DMXL1 to inhibit autophagy, lysosomal acidification, and viral assemblyHanqi Li, Alice Fletcher-Etherington, Leah M Hunter, et al.
Plos Pathogens|April 16, 2015
Plasma membrane profiling defines an expanded class of cell surface proteins selectively targeted for degradation by HCMV US2 in cooperation with UL141Jye-Lin Hsu, Dick J H van den Boomen, Peter Tomasec, et al.
Cell Host & Microbe|October 7, 2015
Cell Surface Proteomic Map of HIV Infection Reveals Antagonism of Amino Acid Metabolism by Vpu and NefNicholas J Matheson, Jonathan Sumner, Kim Wals, et al.
European Journal of Immunology|February 11, 2025
ISG15-Dependent Stabilisation of USP18 Is Necessary but Not Sufficient to Regulate Type I Interferon Signalling in HumansAndri Vasou, Katie Nightingale, Vladimíra Cetkovská, et al.
Journal of Proteome Research|August 4, 2017
Quantitative Temporal in Vivo Proteomics Deciphers the Transition of Virus-Driven Myeloid Cells into M2 MacrophagesDerek R Clements, John Patrick Murphy, Andra Sterea, et al.
Elife|December 25, 2019
Human cytomegalovirus interactome analysis identifies degradation hubs, domain associations and viral protein functionsLuis V Nobre, Katie Nightingale, Benjamin J Ravenhill, et al.
Pageof 9

Showing results (41-50 of 82) with videos related to

Sort By:
Pageof 9
Elife|November 16, 2021
Efficacy of FFP3 respirators for prevention of SARS-CoV-2 infection in healthcare workersMark Ferris, Rebecca Ferris, Chris Workman, et al.
Nature Communications|December 8, 2023
Quantitative proteomics defines mechanisms of antiviral defence and cell death during modified vaccinia Ankara infectionJonas D Albarnaz, Joanne Kite, Marisa Oliveira, et al.
Cell Reports|May 18, 2017
A Temporal Proteomic Map of Epstein-Barr Virus Lytic Replication in B CellsIna Ersing, Luis Nobre, Liang Wei Wang, et al.
Cell Reports|October 7, 2020
Temporal Proteomic Analysis of Herpes Simplex Virus 1 Infection Reveals Cell-Surface Remodeling via pUL56-Mediated GOPC DegradationTimothy K Soh, Colin T R Davies, Julia Muenzner, et al.
Cell Host & Microbe|March 13, 2024
Human cytomegalovirus degrades DMXL1 to inhibit autophagy, lysosomal acidification, and viral assemblyHanqi Li, Alice Fletcher-Etherington, Leah M Hunter, et al.
Plos Pathogens|April 16, 2015
Plasma membrane profiling defines an expanded class of cell surface proteins selectively targeted for degradation by HCMV US2 in cooperation with UL141Jye-Lin Hsu, Dick J H van den Boomen, Peter Tomasec, et al.
Cell Host & Microbe|October 7, 2015
Cell Surface Proteomic Map of HIV Infection Reveals Antagonism of Amino Acid Metabolism by Vpu and NefNicholas J Matheson, Jonathan Sumner, Kim Wals, et al.
European Journal of Immunology|February 11, 2025
ISG15-Dependent Stabilisation of USP18 Is Necessary but Not Sufficient to Regulate Type I Interferon Signalling in HumansAndri Vasou, Katie Nightingale, Vladimíra Cetkovská, et al.
Journal of Proteome Research|August 4, 2017
Quantitative Temporal in Vivo Proteomics Deciphers the Transition of Virus-Driven Myeloid Cells into M2 MacrophagesDerek R Clements, John Patrick Murphy, Andra Sterea, et al.
Elife|December 25, 2019
Human cytomegalovirus interactome analysis identifies degradation hubs, domain associations and viral protein functionsLuis V Nobre, Katie Nightingale, Benjamin J Ravenhill, et al.
Pageof 9