Exploring the influence of brilliant blue G on amyloid fibril formation of lysozyme
Journal
International Journal of Biological Macromolecules
Journal Volume
138
Pages
37-48
Date Issued
2019
Author(s)
How, S.-C.
Hsin, A.
Chen, G.-Y.
Hsu, W.-T.
Yang, S.-M.
Chou, W.-L.
Chou, S.-H.
Wang, S.S.-S.
Abstract
Evidence suggests that amyloid fibril mitigation/inhibition is considered a promising approach toward treating amyloid diseases. In this work, we first examined how amyloid fibrillogenesis of lysozyme was affected by BBG, a safe triphenylmethane compound with nice blood–brain-barrier-permeability, and found that shorter fibrillar species were formed in the lysozyme samples treated with BBG. Next, alterations in the features including the secondary as well as tertiary structure, extent of aggregation, and molecular distribution of lysozyme triggered by the addition of BBG were examined by various spectroscopic techniques, right-angle light scattering, dynamic light scattering, and SDS-PAGE. In addition, we have investigated how BBG affected the lysozyme fibril-induced cytotoxicity in SH-SY5Y cells. We found that a large quantity of shorter fibrillar species and more lysozyme monomers were present in the samples treated with BBG. Also, the addition of BBG rescued SH-SY5Y cells from cell death induced by amyloid fibrils of lysozyme. Finally, information about the binding sites and interacting forces involved in the BBG-lysozyme interaction was further explored using synchronous fluorescence and molecular docking approaches. Molecular docking results revealed that, apart from the hydrophobic interaction(s), hydrogen bonding, electrostatic interactions, and van der Waal forces may also be involved in the binding interaction. ? 2019
SDGs
Other Subjects
amyloid; brilliant blue G; dye; lysozyme; monomer; triphenylmethane; unclassified drug; amyloid; coomassie Brilliant Blue; fuchsine; lysozyme; protein aggregate; amyloid fibrillogenesis; Article; binding site; blood brain barrier; cell death; cell viability; circular dichroism; cytotoxicity; development; enzyme binding; fluorescence analysis; hydrogen bond; hydrophobicity; molecular docking; MTT assay; photon correlation spectroscopy; polyacrylamide gel electrophoresis; protein aggregation; protein secondary structure; protein tertiary structure; right angle light scattering; SH-SY5Y cell line; spectroscopy; static electricity; cell survival; chemistry; drug effect; human; protein conformation; tumor cell line; Amyloid; Binding Sites; Cell Line, Tumor; Cell Survival; Humans; Molecular Docking Simulation; Muramidase; Protein Aggregates; Protein Conformation; Rosaniline Dyes
Type
journal article