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Methods in Molecular Biology (Clifton, N.J.)
|
December 29, 2019
Biochemical Characterization of Middle East Respiratory Syndrome Coronavirus Spike Protein Proteolytic Processing
Gary R Whittaker, Jean K Millet
Current Opinion in Virology
|
March 21, 2021
Coronavirus entry: how we arrived at SARS-CoV-2
Gary R Whittaker, Susan Daniel, Jean K Millet
Iscience
|
June 9, 2020
Proteolytic Cleavage of the SARS-CoV-2 Spike Protein and the Role of the Novel S1/S2 Site
Javier A Jaimes, Jean K Millet, Gary R Whittaker
FEMS Microbiology Reviews
|
October 29, 2020
Molecular diversity of coronavirus host cell entry receptors
Jean K Millet, Javier A Jaimes, Gary R Whittaker
SSRN
|
July 28, 2020
Proteolytic cleavage of the SARS-CoV-2 spike protein and the role of the novel S1/S2 site
Javier A Jaimes, Jean K Millet, Gary R Whittaker
Viruses
|
July 21, 2012
Mechanisms of coronavirus cell entry mediated by the viral spike protein
Sandrine Belouzard, Jean K Millet, Beth N Licitra, et al.
Comparative Medicine
|
October 12, 2021
Viral and Host Attributes Underlying the Origins of Zoonotic Coronaviruses in Bats
Alison E Stout, Qinghua Guo, Jean K Millet, et al.
Arxiv
|
June 19, 2020
Structural modeling of 2019-novel coronavirus (nCoV) spike protein reveals a proteolytically-sensitive activation loop as a distinguishing feature compared to SARS-CoV and related SARS-like coronaviruses
Javier A Jaimes, Nicole M Andre, Jean K Millet, et al.
One Health (Amsterdam, Netherlands)
|
June 28, 2021
Furin cleavage sites in the spike proteins of bat and rodent coronaviruses: Implications for virus evolution and zoonotic transfer from rodent species
Alison E Stout, Jean K Millet, Michael J Stanhope, et al.
Biorxiv : the Preprint Server for Biology
|
June 9, 2020
Structural modeling of 2019-novel coronavirus (nCoV) spike protein reveals a proteolytically-sensitive activation loop as a distinguishing feature compared to SARS-CoV and related SARS-like coronaviruses
Javier A Jaimes, Nicole M André, Jean K Millet, et al.
Page
of 4
Search research articles
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Showing results (1-10 of 34) with videos related to
Sort By:
Page
of 4
Methods in Molecular Biology (Clifton, N.J.)
|
December 29, 2019
Biochemical Characterization of Middle East Respiratory Syndrome Coronavirus Spike Protein Proteolytic Processing
Gary R Whittaker, Jean K Millet
Current Opinion in Virology
|
March 21, 2021
Coronavirus entry: how we arrived at SARS-CoV-2
Gary R Whittaker, Susan Daniel, Jean K Millet
Iscience
|
June 9, 2020
Proteolytic Cleavage of the SARS-CoV-2 Spike Protein and the Role of the Novel S1/S2 Site
Javier A Jaimes, Jean K Millet, Gary R Whittaker
FEMS Microbiology Reviews
|
October 29, 2020
Molecular diversity of coronavirus host cell entry receptors
Jean K Millet, Javier A Jaimes, Gary R Whittaker
SSRN
|
July 28, 2020
Proteolytic cleavage of the SARS-CoV-2 spike protein and the role of the novel S1/S2 site
Javier A Jaimes, Jean K Millet, Gary R Whittaker
Viruses
|
July 21, 2012
Mechanisms of coronavirus cell entry mediated by the viral spike protein
Sandrine Belouzard, Jean K Millet, Beth N Licitra, et al.
Comparative Medicine
|
October 12, 2021
Viral and Host Attributes Underlying the Origins of Zoonotic Coronaviruses in Bats
Alison E Stout, Qinghua Guo, Jean K Millet, et al.
Arxiv
|
June 19, 2020
Structural modeling of 2019-novel coronavirus (nCoV) spike protein reveals a proteolytically-sensitive activation loop as a distinguishing feature compared to SARS-CoV and related SARS-like coronaviruses
Javier A Jaimes, Nicole M Andre, Jean K Millet, et al.
One Health (Amsterdam, Netherlands)
|
June 28, 2021
Furin cleavage sites in the spike proteins of bat and rodent coronaviruses: Implications for virus evolution and zoonotic transfer from rodent species
Alison E Stout, Jean K Millet, Michael J Stanhope, et al.
Biorxiv : the Preprint Server for Biology
|
June 9, 2020
Structural modeling of 2019-novel coronavirus (nCoV) spike protein reveals a proteolytically-sensitive activation loop as a distinguishing feature compared to SARS-CoV and related SARS-like coronaviruses
Javier A Jaimes, Nicole M André, Jean K Millet, et al.
Page
of 4