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Correlation between the binding affinity and the conformational entropy of nanobody SARS-CoV-2 spike protein complexes

Authors :
Halina Mikolajek
Miriam Weckener
Z. Faidon Brotzakis
Jiandong Huo
Evmorfia V. Dalietou
Audrey Le Bas
Pietro Sormanni
Peter J. Harrison
Philip N. Ward
Steven Truong
Lucile Moynie
Daniel K. Clare
Maud Dumoux
Joshua Dormon
Chelsea Norman
Naveed Hussain
Vinod Vogirala
Raymond J. Owens
Michele Vendruscolo
James H. Naismith
Mikolajek, Halina [0000-0003-0776-9974]
Weckener, Miriam [0000-0002-1419-9378]
Sormanni, Pietro [0000-0002-6228-2221]
Ward, Philip N [0000-0003-2546-3426]
Truong, Steven [0000-0001-9624-4461]
Moynie, Lucile [0000-0002-4097-4331]
Hussain, Naveed [0000-0002-5170-0061]
Vogirala, Vinod [0000-0002-8534-3736]
Owens, Raymond J [0000-0002-3705-2993]
Vendruscolo, Michele [0000-0002-3616-1610]
Naismith, James H [0000-0001-6744-5061]
Apollo - University of Cambridge Repository
Source :
Proceedings of the National Academy of Sciences of the United States of America. 119(31)
Publication Year :
2022

Abstract

Camelid single-domain antibodies, also known as nanobodies, can be readily isolated from naïve libraries for specific targets but often bind too weakly to their targets to be immediately useful. Laboratory-based genetic engineering methods to enhance their affinity, termed maturation, can deliver useful reagents for different areas of biology and potentially medicine. Using the receptor binding domain (RBD) of the severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) spike protein and a naïve library, we generated closely related nanobodies with micromolar to nanomolar binding affinities. By analyzing the structure–activity relationship using X-ray crystallography, cryoelectron microscopy, and biophysical methods, we observed that higher conformational entropy losses in the formation of the spike protein–nanobody complex are associated with tighter binding. To investigate this, we generated structural ensembles of the different complexes from electron microscopy maps and correlated the conformational fluctuations with binding affinity. This insight guided the engineering of a nanobody with improved affinity for the spike protein.

Details

ISSN :
10916490
Volume :
119
Issue :
31
Database :
OpenAIRE
Journal :
Proceedings of the National Academy of Sciences of the United States of America
Accession number :
edsair.doi.dedup.....0b811107a3bdaaf5ddc1b250705ac6e1