Structural rearrangement of amyloid-β upon inhibitor binding suppresses formation of Alzheimer’s disease related oligomers

Author:

Lieblein Tobias1ORCID,Zangl Rene1,Martin Janosch1,Hoffmann Jan1ORCID,Hutchison Marie J2,Stark Tina2,Stirnal Elke2,Schrader Thomas3ORCID,Schwalbe Harald2ORCID,Morgner Nina1ORCID

Affiliation:

1. JW Goethe-University, Institute of Physical and Theoretical Chemistry, Frankfurt, Germany

2. JW Goethe-University, Institute for Organic Chemistry and Chemical Biology and Center for Biomolecular Magnetic Resonance, Frankfurt am Main, Germany

3. University of Duisburg-Essen, Institute of Organic Chemistry, Essen, Germany

Abstract

The formation of oligomers of the amyloid-β peptide plays a key role in the onset of Alzheimer's disease. We describe herein the investigation of disease-relevant small amyloid-β oligomers by mass spectrometry and ion mobility spectrometry, revealing functionally relevant structural attributes. In particular, we can show that amyloid-β oligomers develop in two distinct arrangements leading to either neurotoxic oligomers and fibrils or non-toxic amorphous aggregates. Comprehending the key-attributes responsible for those pathways on a molecular level is a pre-requisite to specifically target the peptide's tertiary structure with the aim to promote the emergence of non-toxic aggregates. Here, we show for two fibril inhibiting ligands, an ionic molecular tweezer and a hydrophobic peptide that despite their different interaction mechanisms, the suppression of the fibril pathway can be deduced from the disappearance of the corresponding structure of the first amyloid-β oligomers.

Funder

State of Hesse

Cluster of Excellence Frankfurt

Deutsche Forschungsgemeinschaft

Horizon 2020 - Research and Innovation Framework Programme

Publisher

eLife Sciences Publications, Ltd

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

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