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From structure to sequence: Antibody discovery using cryoEM.

Aleksandar AntanasijevicCharles A BowmanRobert N KirchdoerferChristopher A CottrellGabriel OzorowskiAmit A UpadhyayKimberly M CirelliDiane G CarnathanChiamaka A EnemuoLeigh M SewallBartek NogalFangzhu ZhaoBettina GroschelWilliam R SchiefDevin SokGuido SilvestriShane CrottySteven E BosingerAndrew B Ward
Published in: Science advances (2022)
One of the rate-limiting steps in analyzing immune responses to vaccines or infections is the isolation and characterization of monoclonal antibodies. Here, we present a hybrid structural and bioinformatic approach to directly assign the heavy and light chains, identify complementarity-determining regions, and discover sequences from cryoEM density maps of serum-derived polyclonal antibodies bound to an antigen. When combined with next-generation sequencing of immune repertoires, we were able to specifically identify clonal family members, synthesize the monoclonal antibodies, and confirm that they interact with the antigen in a manner equivalent to the corresponding polyclonal antibodies. This structure-based approach for identification of monoclonal antibodies from polyclonal sera opens new avenues for analysis of immune responses and iterative vaccine design.
Keyphrases
  • immune response
  • dendritic cells
  • small molecule
  • toll like receptor
  • high throughput
  • gene expression
  • image quality
  • dna methylation
  • computed tomography
  • genome wide
  • cell free