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Author Details

Michael P Rout
The Rockefeller University
1990
172
67
Andrej Sali (CM4AI)
PMIDPaper TitleJournal TitlePublished Year
37503298Nanobody repertoire generated against the spike protein of ancestral SARS-CoV-2 remains efficacious against the rapidly evolving virus.bioRxiv2024
37503298Nanobody repertoire generated against the spike protein of ancestral SARS-CoV-2 remains efficacious against the rapidly evolving virus.bioRxiv2024
36747644Ultrasensitive detection of circulating LINE-1 ORF1p as a specific multi-cancer biomarker.bioRxiv2023
37738963Implications of a multiscale structure of the yeast nuclear pore complex.Mol Cell2023
37066338Dynamic molecular mechanism of the nuclear pore complex permeability barrier.bioRxiv2023
37064528Improving the Hole Picture: Towards a Consensus on the Mechanism of Nuclear Transport.ArXiv2023
36747644Ultrasensitive detection of circulating LINE-1 ORF1p as a specific multi-cancer biomarker.bioRxiv2023
37358474Nuclear pore complexes mediate subtelomeric gene silencing by regulating PCNA levels on chromatin.J Cell Biol2023
36920247A general method for quantitative fractionation of mammalian cells.J Cell Biol2023
37099395Improving the hole picture: towards a consensus on the mechanism of nuclear transport.Biochem Soc Trans2023
36720309Expanding and improving nanobody repertoires using a yeast display method: Targeting SARS-CoV-2.J Biol Chem2023
37738963Implications of a multiscale structure of the yeast nuclear pore complex.Mol Cell2023
37099395Improving the hole picture: towards a consensus on the mechanism of nuclear transport.Biochem Soc Trans2023
37066338Dynamic molecular mechanism of the nuclear pore complex permeability barrier.bioRxiv2023
37358474Nuclear pore complexes mediate subtelomeric gene silencing by regulating PCNA levels on chromatin.J Cell Biol2023
37064528Improving the Hole Picture: Towards a Consensus on the Mechanism of Nuclear Transport.ArXiv2023
36720309Expanding and improving nanobody repertoires using a yeast display method: Targeting SARS-CoV-2.J Biol Chem2023
36920247A general method for quantitative fractionation of mammalian cells.J Cell Biol2023
34982960Comprehensive structure and functional adaptations of the yeast nuclear pore complex.Cell2022
36028415Sending the message: specialized RNA export mechanisms in trypanosomes.Trends Parasitol2022
35367208Proteomic elucidation of the targets and primary functions of the picornavirus 2A protease.J Biol Chem2022
35412228Affinity Isolation of Endogenous Saccharomyces Cerevisiae Nuclear Pore Complexes.Methods Mol Biol2022
36399624Coatomer in the universe of cellular complexity.Mol Biol Cell2022
34982960Comprehensive structure and functional adaptations of the yeast nuclear pore complex.Cell2022
35412228Affinity Isolation of Endogenous Saccharomyces Cerevisiae Nuclear Pore Complexes.Methods Mol Biol2022
35367208Proteomic elucidation of the targets and primary functions of the picornavirus 2A protease.J Biol Chem2022
36399624Coatomer in the universe of cellular complexity.Mol Biol Cell2022
36028415Sending the message: specialized RNA export mechanisms in trypanosomes.Trends Parasitol2022
33393463Malaria parasites use a soluble RhopH complex for erythrocyte invasion and an integral form for nutrient uptake.Elife2021
33851164Nanobody Repertoires for Exposing Vulnerabilities of SARS-CoV-2.bioRxiv2021
33563541One Ring to Rule them All? Structural and Functional Diversity in the Nuclear Pore Complex.Trends Biochem Sci2021
33333016Dissecting the Structural Dynamics of the Nuclear Pore Complex.Mol Cell2021
33393463Malaria parasites use a soluble RhopH complex for erythrocyte invasion and an integral form for nutrient uptake.Elife2021
34648371Replication and single-cycle delivery of SARS-CoV-2 replicons.Science2021
34874007Highly synergistic combinations of nanobodies that target SARS-CoV-2 and are resistant to escape.Elife2021
34527957Measuring <i>in vivo</i> protein turnover and exchange in yeast macromolecular assemblies.STAR Protoc2021
33851164Nanobody Repertoires for Exposing Vulnerabilities of SARS-CoV-2.bioRxiv2021
33563541One Ring to Rule them All? Structural and Functional Diversity in the Nuclear Pore Complex.Trends Biochem Sci2021
34874007Highly synergistic combinations of nanobodies that target SARS-CoV-2 and are resistant to escape.Elife2021
34648371Replication and single-cycle delivery of SARS-CoV-2 replicons.Science2021
34527957Measuring <i>in vivo</i> protein turnover and exchange in yeast macromolecular assemblies.STAR Protoc2021
33333016Dissecting the Structural Dynamics of the Nuclear Pore Complex.Mol Cell2021
32239688Integrative structure and function of the yeast exocyst complex.Protein Sci2020
32239688Integrative structure and function of the yeast exocyst complex.Protein Sci2020
32696372Analysis of Multivalent IDP Interactions: Stoichiometry, Affinity, and Local Concentration Effect Measurements.Methods Mol Biol2020
32960270Affinity proteomic dissection of the human nuclear cap-binding complex interactome.Nucleic Acids Res2020
32785687Crippling life support for SARS-CoV-2 and other viruses through synthetic lethality.J Cell Biol2020
32960270Affinity proteomic dissection of the human nuclear cap-binding complex interactome.Nucleic Acids Res2020
32785687Crippling life support for SARS-CoV-2 and other viruses through synthetic lethality.J Cell Biol2020
32696372Analysis of Multivalent IDP Interactions: Stoichiometry, Affinity, and Local Concentration Effect Measurements.Methods Mol Biol2020
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Collaborators

The Rockefeller University
Co-authored papers 78
University of California San Francisco
Co-authored papers 32
Center for Global Infectious Disease Research, Seattle Children's Research Institute
Co-authored papers 32
The Rockefeller University
Co-authored papers 29
University of Dundee
Co-authored papers 23
The Rockefeller University
Co-authored papers 14
The Rockefeller University
Co-authored papers 14
The Rockefeller University
Co-authored papers 14
Howard Hughes Medical Institute, The Rockefeller University
Co-authored papers 12
The Rockefeller University
Co-authored papers 11
Korea Advanced Institute of Science and Technology (KAIST)
Co-authored papers 11
Co-authored papers 10
Institute for Systems Genetics, NYU Grossman School of Medicine
Co-authored papers 10
Dalian University of Technology
Co-authored papers 10
CNRS UMR9018, Institut Gustave Roussy, Universite Paris-Saclay
Co-authored papers 10
Princeton University
Co-authored papers 9
The Rockefeller University
Co-authored papers 8
University of Alberta
Co-authored papers 8
Albert Einstein College of Medicine
Co-authored papers 8
The Rockefeller University
Co-authored papers 7
Universidad Pablo de Olavide
Co-authored papers 7
The Rockefeller University
Co-authored papers 7
College of Medicine, Yangzhou University
Co-authored papers 7
Institute for Systems Genetics, New York University Langone Medical Center
Co-authored papers 7
The Rockefeller University
Co-authored papers 6
NYU School of Medicine
Co-authored papers 6
The Rockefeller University
Co-authored papers 6
New York University Grossman School of Medicine
Co-authored papers 6
Co-authored papers 6
Center for Global Infectious Disease Research, Seattle Children's Research Institute
Co-authored papers 6