Abstract
The propensity of peptides and proteins to form self-assembled structures has very promising applications in the development of novel nanomaterials. Under certain conditions, amyloid protein α-synuclein forms well-ordered structures - fibrils, which have proven to be valuable building blocks for bionanotechnological approaches. Herein we demonstrate the functionalization of fibrils formed by a mutant α-synuclein that contains an additional cysteine residue. The fibrils have been biotinylated via thiol groups and subsequently joined with neutravidin-conjugated gold nanoparticles. Atomic force microscopy and transmission electron microscopy confirmed the expected structure - nanoladders. The ability of fibrils (and of the additional components) to assemble into such complex structures offers new opportunities for fabricating novel hybrid materials or devices.
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Poviloniene, S., Časaite, V., Bukauskas, V., Šetkus, A., Staniulis, J., & Meškys, R. (2015). Functionalization of α-synuclein fibrils. Beilstein Journal of Nanotechnology, 6(1), 124–133. https://doi.org/10.3762/bjnano.6.12
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