Literature DB >> 32483579

Membrane affinity of individual toxic protein oligomers determined at the single-molecule level.

Simli Dey1, Anirban Das1, Arpan Dey1, Sudipta Maiti1.   

Abstract

Oligomers are the key suspects in protein aggregation-linked diseases, such as Alzheimer's and Type II diabetes, and most likely exert their toxicity by interacting with lipid membranes. However, the "which oligomer" question remains an obstacle in understanding the disease mechanism, as the exact identity of the toxic oligomer(s) is not yet known. Oligomers exist as a mixture of species of different sizes (i.e. as different 'n-mers') in a physiological solution, making it difficult to determine the properties of individual species. Here we demonstrate a method based on single-molecule photo-bleaching (smPB) which can provide an answer to the "which oligomer" question, at least as far as membrane affinity is concerned. We calculate the ratio of the oligomer size distribution of human Islet Amyloid Polypeptide (IAPP) in the aqueous phase and that on a coexisting artificial lipid bilayer, and this measures the relative membrane affinity of individual oligomeric species. A problem with smPB measurements is that they can be very sensitive to pre-measurement bleaching. Here we correct for pre-bleaching using a covalently linked multimeric peptide as a bleaching standard. We find that the order of membrane affinity for IAPP n-mers is trimer > dimer > tetramer ≫ monomer. Our results agree well with the average membrane affinity values of oligomeric and monomeric solutions previously measured with Fluorescence Correlation Spectroscopy. The "which oligomer" question, in the context of membrane affinity, can therefore, be solved quantitatively for any membrane-active toxic protein aggregate.

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Year:  2020        PMID: 32483579     DOI: 10.1039/d0cp00450b

Source DB:  PubMed          Journal:  Phys Chem Chem Phys        ISSN: 1463-9076            Impact factor:   3.676


  4 in total

1.  Determining the Stoichiometry of Amyloid Oligomers by Single-Molecule Photobleaching.

Authors:  Arpan Dey; Sudipta Maiti
Journal:  Methods Mol Biol       Date:  2022

Review 2.  Single Molecule Characterization of Amyloid Oligomers.

Authors:  Jie Yang; Sarah Perrett; Si Wu
Journal:  Molecules       Date:  2021-02-11       Impact factor: 4.411

3.  Single Molecule Measurements of the Accessibility of Molecular Surfaces.

Authors:  Arpan Dey; Vicky Vishvakarma; Anirban Das; Mamata Kallianpur; Simli Dey; Roshni Joseph; Sudipta Maiti
Journal:  Front Mol Biosci       Date:  2021-12-01

Review 4.  Illuminating amyloid fibrils: Fluorescence-based single-molecule approaches.

Authors:  Lauren J Rice; Heath Ecroyd; Antoine M van Oijen
Journal:  Comput Struct Biotechnol J       Date:  2021-08-13       Impact factor: 7.271

  4 in total

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