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Effects of Detergent on α-Synuclein Structure: A Native MS-Ion Mobility Study

Rani Moons, Renate van der Wekken-de Bruijne, Stuart Maudsley, Filip Lemière, Anne‐Marie Lambeir, Frank Sobott

2020International Journal of Molecular Sciences19 citationsDOIOpen Access PDF

Abstract

The intrinsically disordered protein α-synuclein plays a major role in Parkinson’s disease. The protein can oligomerize resulting in the formation of various aggregated species in neuronal cells, leading to neurodegeneration. The interaction of α-synuclein with biological cell membranes plays an important role for specific functions of α-synuclein monomers, e.g., in neurotransmitter release. Using different types of detergents to mimic lipid molecules present in biological membranes, including the presence of Ca2+ ions as an important structural factor, we aimed to gain an understanding of how α-synuclein interacts with membrane models and how this affects the protein conformation and potential oligomerization. We investigated detergent binding stoichiometry, affinity and conformational changes of α-synuclein taking detergent concentration, different detergent structures and charges into account. With native nano-electrospray ionization ion mobility-mass spectrometry, we were able to detect unique conformational patterns resulting from binding of specific detergents to α-synuclein. Our data demonstrate that α-synuclein monomers can interact with detergent molecules irrespective of their charge, that protein-micelle interactions occur and that micelle properties are an important factor.

Topics & Concepts

ChemistryBiophysicsElectrospray ionizationMonomerNeurodegenerationMembraneMicelleMoleculeStructural motifMass spectrometryBiochemistryBiologyChromatographyMedicineDiseaseAqueous solutionOrganic chemistryPathologyPolymerPhysical chemistryParkinson's Disease Mechanisms and TreatmentsElectrochemical sensors and biosensorsElectrochemical Analysis and Applications