bioRxiv · 10.1101/2020.10.24.353714
The allosteric modulation of Complement C5 by knob domain peptides
Abstract
To overcome limited germline combinatorial diversity, bovines have evolved a subset of antibodies with ultra-long CDRH3 regions that harbour cysteine-rich knob domains. To produce affinity-maturated peptides, we previously isolated autonomous 3-6 kDa knob domains from bovine antibodies. Here, we show that binding of four knob domain peptides elicits a range of effects on the clinically validated drug target complement C5. Allosteric mechanisms predominated, with one peptide selectively inhibiting C5 cleavage by the alternative pathway C5 convertase, revealing a targetable mechanistic difference between the classical and alternative pathway C5 convertases. Taking a hybrid biophysical approach, we present C5-knob domain co-crystal structures and, by solution methods, observed allosteric effects propagating >50 [A] from the binding sites. This study expands the therapeutic scope of C5, presents new inhibitors and introduces knob domains as new, low molecular weight antibody fragments, with therapeutic potential.
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Macpherson, A., Laabei, M., Ahdash, Z., Graewert, M. A., Birtley, J., Schulze, S., Crennell, S., Robinson, S., Holmes, B., Oleinikovas, V., Nilsson, P. H., Snowden, J., Ellis, V., Mollnes, T. E., Deane, C. M., Svergun, D. I., Lawson, A., van den Elsen, J.. 2020-10-25. The allosteric modulation of Complement C5 by knob domain peptides. https://doi.org/10.1101/2020.10.24.353714
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