bioRxiv · 10.64898/2026.07.13.738012
Potent substoichiometric inhibition of alpha-synuclein aggregation by de novo oligomer-binding proteins
Abstract
The intrinsically disordered, non-amyloid-{beta} component domain of -synuclein (Syn) drives aggregation in Parkinson's disease but lacks a stable epitope for structure-based drug design. We used deep learning-based protein design to generate de novo binders capturing this region in a {beta}-strand conformation. Three designs bound Syn with nanomolar affinities, with solution NMR spectroscopy supporting the intended fold. All three suppressed fibril formation at substoichiometric ratios, and fitting of aggregation kinetics resolved the microscopic steps inhibited by each. Notably, one binder preferentially engaged oligomers and inhibited secondary nucleation, both closely linked to toxicity. In cells, all three suppressed seeded Syn assembly, with the oligomer binder being the most effective. Together, these findings establish a set of molecules that target distinct aggregation intermediates and mechanistically reshape Syn assembly.
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Zhang, Y., Han, H. L., Ortigosa-Pascual, L., Miles, U. Z., Snow, F., Tu, D., Meisl, G., Nott, T. J., Laman, H., McShan, A. C., Sahtoe, D. D., Knowles, T. P. J.. 2026-07-14. Potent substoichiometric inhibition of alpha-synuclein aggregation by de novo oligomer-binding proteins. https://doi.org/10.64898/2026.07.13.738012
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