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Efficient characterization of multiple binding sites of small molecule imaging ligands on amyloid-beta, 4-repeat/full-length tau and alpha-synuclein

Sobek, J.; Li, J.; Combes, B. F.; Gerez, J. A.; Nilsson, P. K.; Henrich, M. T.; Geibl, F. F.; Shi, K.; Rominger, A.; Oertel, W. H.; Nitsch, R. M.; Nordberg, A.; Agren, H.; Riek, R.; Ni, R.

2023-03-13 pharmacology and toxicology
10.1101/2023.03.12.531651 bioRxiv
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AimThere is an unmet need for compounds that detect alpha-synuclein (Syn) and 4-repeat tau, which are critical in many neurodegenerative diseases for diagnostic and therapeutic purposes. Here, we aim to develop an efficient surface plasmon resonance (SPR)-based method to facilitate the characterization of small molecule ligands/compounds to these fibrils. MethodsSPR measurements were conducted to characterize the binding properties of fluorescent ligands/compounds towards recombinant A{beta}42, K18 4-repeat/full-length tau and Syn fibrils. In silico modelling was performed to examine the binding pockets of ligands on Syn fibrils. Immunofluorescence staining with fluorescence ligands and specific antibodies on postmortem brain tissue slices from patients with Parkinsons disease and disease mouse models was performed. ResultsWe optimized the protocol for immobilizing A{beta}42, K18 tau, full-length tau and Syn fibrils in a controlled aggregation state on SPR sensor chips. The results from the analysis of binding kinetics suggested the presence of at least two binding sites for all fibrils, including luminescent conjugated oligothiophenes (HS-169, HS-84, h-FTAA and q-FTAA), pyridine derivative PBB5, nonfluorescent methylene blue and lansoprazole. In silico modelling studies for Syn (6H6B) showed four binding sites with preference to S4. Immunofluorescence staining validated the detection of pS129-positive Syn in brain tissue from Parkinsons disease patients, Syn PFF-injected mice, 6E10-positive A{beta} in arcA{beta} mice, and AT-8/AT-100-positive in tau pR5 tau mice, respectively. ConclusionsSPR measurements of ligands and small molecules binding to A{beta}42, 4R and full-length tau and Syn fibrils suggest the existence of multiple binding sites. This approach may provide efficient characterization of compound binding properties towards these fibrils important in neurodegenerative diseases.

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