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Affinity Is an Important Determinant of the Anti-Trypanosome Activity of Nanobodies
Authors:Guy Caljon  Beno?t Stijlemans  Dirk Saerens  Jan Van Den Abbeele  Serge Muyldermans  Stefan Magez  Patrick De Baetselier
Institution:1. Department of Biomedical Sciences, Unit of Veterinary Protozoology, Institute of Tropical Medicine Antwerp, Antwerp, Belgium.; 2. Research Unit of Cellular and Molecular Immunology, Vrije Universiteit Brussel, Brussels, Belgium.; 3. Laboratory of Myeloid Cell Immunology, VIB, Brussels, Belgium.; 4. Department of Structural Biology, VIB, Brussels, Belgium.; Foundation for Innovative New Diagnostics (FIND), Switzerland,
Abstract:

Background

The discovery of Nanobodies (Nbs) with a direct toxic activity against African trypanosomes is a recent advancement towards a new strategy against these extracellular parasites. The anti-trypanosomal activity relies on perturbing the highly active recycling of the Variant-specific Surface Glycoprotein (VSG) that occurs in the parasite''s flagellar pocket.

Methodology/Principal Findings

Here we expand the existing panel of Nbs with anti-Trypanosoma brucei potential and identify four categories based on their epitope specificity. We modified the binding properties of previously identified Nanobodies Nb_An05 and Nb_An33 by site-directed mutagenesis in the paratope and found this to strongly affect trypanotoxicity despite retention of antigen-targeting properties. Affinity measurements for all identified anti-trypanosomal Nbs reveal a strong correlation between trypanotoxicity and affinity (KD), suggesting that it is a crucial determinant for this activity. Half maximal effective (50%) affinity of 57 nM was calculated from the non-linear dose-response curves. In line with these observations, Nb humanizing mutations only preserved the trypanotoxic activity if the KD remained unaffected.

Conclusions/Significance

This study reveals that the binding properties of Nanobodies need to be compatible with achieving an occupancy of >95% saturation of the parasite surface VSG in order to exert an anti-trypanosomal activity. As such, Nb-based approaches directed against the VSG target would require binding to an accessible, conserved epitope with high affinity.
Keywords:
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