Your browser doesn't support javascript.
loading
Designed proteins assemble antibodies into modular nanocages
Robby Divine; Ha V. Dang; George Ueda; Jorge A. Fallas; Ivan Vulovic; William Sheffler; Shally Saini; Yan Ting Zhao; Infencia Xavier Raj; Peter A. Morawski; Madeleine F. Jennewein; Leah J. Homad; Yu-Hsin Wan; Marti R. Tooley; Franziska Seeger; Mitchell L. Fahning; Ali Etemadi; James Lazarovits; Alex Roederer; Alexandra C. Walls; Lance Stewart; Mohammadali Mazloomi; Neil P. King; Daniel J. Campbell; Andrew T. McGuire; Leonidas Stamatatos; Hannele Ruohola-Baker; Julie Mathieu; David Veesler; David Baker.
Afiliação
  • Robby Divine; University of Washington
  • Ha V. Dang; University of Washington
  • George Ueda; University of Washington
  • Jorge A. Fallas; University of Washington
  • Ivan Vulovic; University of Washington
  • William Sheffler; University of Washington
  • Shally Saini; University of Washington
  • Yan Ting Zhao; University of Washington
  • Infencia Xavier Raj; University of Washington
  • Peter A. Morawski; Benaroya Research Institute
  • Madeleine F. Jennewein; Fred Hutchinson Cancer Research Center
  • Leah J. Homad; Fred Hutchinson Cancer Research Center
  • Yu-Hsin Wan; Fred Hutchinson Cancer Research Center
  • Marti R. Tooley; University of Washington
  • Franziska Seeger; University of Washington
  • Mitchell L. Fahning; Benaroya Research Institute
  • Ali Etemadi; University of Washington
  • James Lazarovits; University of Washington
  • Alex Roederer; University of Washington
  • Alexandra C. Walls; University of Washington
  • Lance Stewart; University of Washington
  • Mohammadali Mazloomi; Tehran University of Medical
  • Neil P. King; University of Washington
  • Daniel J. Campbell; Benaroya Research Institute
  • Andrew T. McGuire; Fred Hutchinson Cancer Research Center
  • Leonidas Stamatatos; Fred Hutchinson Cancer Research Center
  • Hannele Ruohola-Baker; University of Washington
  • Julie Mathieu; University of Washington
  • David Veesler; University of Washington
  • David Baker; University of Washington
Preprint em Inglês | bioRxiv | ID: ppbiorxiv-406611
Artigo de periódico
Um artigo publicado em periódico científico está disponível e provavelmente é baseado neste preprint, por meio do reconhecimento de similaridade realizado por uma máquina. A confirmação humana ainda está pendente.
Ver artigo de periódico
ABSTRACT
Antibodies are widely used in biology and medicine, and there has been considerable interest in multivalent antibody formats to increase binding avidity and enhance signaling pathway agonism. However, there are currently no general approaches for forming precisely oriented antibody assemblies with controlled valency. We describe the computational design of two-component nanocages that overcome this limitation by uniting form and function. One structural component is any antibody or Fc fusion and the second is a designed Fc-binding homo-oligomer that drives nanocage assembly. Structures of 8 antibody nanocages determined by electron microscopy spanning dihedral, tetrahedral, octahedral, and icosahedral architectures with 2, 6, 12, and 30 antibodies per nanocage match the corresponding computational models. Antibody nanocages targeting cell-surface receptors enhance signaling compared to free antibodies or Fc-fusions in DR5-mediated apoptosis, Tie2-mediated angiogenesis, CD40 activation, and T cell proliferation; nanocage assembly also increases SARS-CoV-2 pseudovirus neutralization by -SARS-CoV-2 monoclonal antibodies and Fc-ACE2 fusion proteins. We anticipate that the ability to assemble arbitrary antibodies without need for covalent modification into highly ordered assemblies with different geometries and valencies will have broad impact in biology and medicine.
Licença
cc_by_nc_nd
Texto completo: Disponível Coleções: Preprints Base de dados: bioRxiv Tipo de estudo: Experimental_studies Idioma: Inglês Ano de publicação: 2020 Tipo de documento: Preprint
Texto completo: Disponível Coleções: Preprints Base de dados: bioRxiv Tipo de estudo: Experimental_studies Idioma: Inglês Ano de publicação: 2020 Tipo de documento: Preprint
...