Structural Basis for the Specific Neutralization of Stx2a with a Camelid Single Domain Antibody Fragment

Toxins (Basel). 2018 Mar 1;10(3):108. doi: 10.3390/toxins10030108.

Abstract

Background: Shiga toxin-producing Escherichia coli (STEC) are a subset of pathogens leading to illnesses such as diarrhea, hemolytic uremic syndrome and even death. The Shiga toxins are the main virulence factors and divided in two groups: Stx1 and Stx2, of which the latter is more frequently associated with severe pathologies in humans.

Results: An immune library of nanobodies (Nbs) was constructed after immunizing an alpaca with recombinant Shiga toxin-2a B subunit (rStx2aB), to retrieve multiple rStx2aB-specific Nbs. The specificity of five Nbs towards rStx2aB was confirmed in ELISA and Western blot. Nb113 had the highest affinity (9.6 nM) and its bivalent construct exhibited a 100-fold higher functional affinity. The structure of the Nb113 in complex with rStx2aB was determined via X-ray crystallography. The crystal structure of the Nb113-rStx2aB complex revealed that five copies of Nb113 bind to the rStx2aB pentamer and that the Nb113 epitope overlaps with the Gb3 binding site, thereby providing a structural basis for the neutralization of Stx2a by Nb113 that was observed on Vero cells. Finally, the tandem-repeated, bivalent Nb113₂ exhibits a higher toxin neutralization capacity compared to monovalent Nb113.

Conclusions: The Nb of highest affinity for rStx2aB is also the best Stx2a and Stx2c toxin neutralizing Nb, especially in a bivalent format. This lead Nb neutralizes Stx2a by competing for the Gb3 receptor. The fusion of the bivalent Nb113₂ with a serum albumin specific Nb is expected to combine high toxin neutralization potential with prolonged blood circulation.

Keywords: B domain; Shiga toxin; Stx2; crystal structure; nanobody; neutralization.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Animals
  • Antibodies, Neutralizing* / chemistry
  • Antibodies, Neutralizing* / physiology
  • Camelids, New World / immunology
  • Chlorocebus aethiops
  • Protein Domains
  • Recombinant Proteins* / chemistry
  • Recombinant Proteins* / immunology
  • Recombinant Proteins* / metabolism
  • Shiga Toxin 2* / chemistry
  • Shiga Toxin 2* / genetics
  • Shiga Toxin 2* / immunology
  • Shiga Toxin 2* / metabolism
  • Single-Domain Antibodies* / chemistry
  • Single-Domain Antibodies* / physiology
  • Vero Cells

Substances

  • Antibodies, Neutralizing
  • Recombinant Proteins
  • Shiga Toxin 2
  • Single-Domain Antibodies