High-resolution structural information of membrane-bound α-synuclein provides insight into the MoA of the anti-Parkinson drug UCB0599

Author:

Schwarz Thomas C.1ORCID,Beier Andreas2,Ledolter Karin1ORCID,Gossenreiter Thomas3,Höfurthner Theresa2,Hartl Markus3ORCID,Baker Terry S.4,Taylor Richard J.4ORCID,Konrat Robert1ORCID

Affiliation:

1. Department of Structural and Computational Biology, Max Perutz Labs, University of Vienna, Vienna 1030, Austria

2. Department of Structural and Computational Biology, Christian Doppler Laboratory for High-Content Structural Biology and Biotechnology, University of Vienna, Vienna 1030, Austria

3. Mass Spectrometry Facility, Max Perutz Labs, Vienna BioCenter, Vienna 1030, Austria

4. UCB Pharma, Slough SL1 3WE, United Kingdom

Abstract

α-synuclein (αS) is an intrinsically disordered protein whose functional ambivalence and protein structural plasticity are iconic. Coordinated protein recruitment ensures proper vesicle dynamics at the synaptic cleft, while deregulated oligomerization on cellular membranes contributes to cell damage and Parkinson’s disease (PD). Despite the protein’s pathophysiological relevance, structural knowledge is limited. Here, we employ NMR spectroscopy and chemical cross-link mass spectrometry on 14 N/ 15 N-labeled αS mixtures to provide for the first time high-resolution structural information of the membrane-bound oligomeric state of αS and demonstrate that in this state, αS samples a surprisingly small conformational space. Interestingly, the study locates familial Parkinson’s disease mutants at the interface between individual αS monomers and reveals different oligomerization processes depending on whether oligomerization occurs on the same membrane surface (cis) or between αS initially attached to different membrane particles (trans). The explanatory power of the obtained high-resolution structural model is used to help determine the mode-of-actionof UCB0599. Here, it is shown that the ligand changes the ensemble of membrane-bound structures, which helps to explain the success this compound, currently being tested in Parkinson’s disease patients in a phase 2 trial, has had in animal models of PD.

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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