Studies of interaction between cyanine dye T-284 and fibrillar alpha-synuclein

Kateryna D Volkova, Vladyslava B Kovalska, Mykhaylo Yu Losytskyy, Gertjan Veldhuis, G M J Segers-Nolten, Olexiy I Tolmachev, Vinod Subramaniam, Sergiy M Yarmoluk

    Research output: Contribution to JournalArticleAcademicpeer-review

    Abstract

    A key feature of Parkinson's disease is the formation and accumulation of amyloid fibrils of the natively unfolded protein α-synuclein (ASN) inside neurons. Recently we have proposed novel sensitive monomethinecyanine dye T-284 as fluorescent probe for quantitative detection of ASN amyloid fibrils. In this study the T-284 dye complex with ASN fibril was characterized by means of fluorescence anisotropy, atomic force microscopy and time-resolved fluorescence techniques to give further insights into the mode of dye interaction with amyloid fibrils. The fluorescence anisotropy of T-284 was shown to noticeably increase upon addition of aggregated proteins indicating on stable dye/amyloid fibril complex formation. AFM imaging of fibrillar wild-type ASN revealed differences in heights between ASN fibrils alone and in presence of the T-284 dye (6.37 ± 1.0 nm and 8.0 ± 1.1 nm respectively), that is believed to be caused by embedding of T-284 dye molecules in the "binding channel" running along the fibril. Fluorescence decay analysis of the T-284 in complexes with fibrillar ASN variants revealed the fluorescence lifetime values for T-284/fibril complexes to be an order of magnitude higher as compared to the free dye. Also, the fluorescence decay of free T-284 was bi-exponential, while dye bound to protein yields tri-exponential decay. We suppose that in complexes with fibrillar ASN variants T-284 dye might exist in different "populations" due to interaction with fibrils in different conformers and ways. The exact binding mode of T-284 with ASN fibrils needs further studies. Studied parameters of dye/amyloid fibril complexes are important for the characterization and screening of newly-developed amyloid-sensitive dyes.

    Original languageEnglish
    Pages (from-to)1267-74
    Number of pages8
    JournalJournal of Fluorescence
    Volume20
    Issue number6
    DOIs
    Publication statusPublished - Nov 2010

    Keywords

    • Carbocyanines
    • Fluorescence Polarization
    • Fluorescent Dyes
    • Microscopy, Atomic Force
    • Molecular Structure
    • alpha-Synuclein
    • Journal Article
    • Research Support, Non-U.S. Gov't

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