Artículo
Amyloidogenicity as a driving force for the formation of functional oligomers
Azizyan, Rafayel A.; Wang, Weiqiang; Anikeenko, Alexey; Radkova, Zinaida; Bakulina, Anastasia; Garro, Adriana
; Charlier, Landry; Dumas, Christian; Ventura, Salvador; Kajava, Andrey V.
Fecha de publicación:
01/10/2020
Editorial:
Academic Press Inc Elsevier Science
Revista:
Journal Of Structural Biology
ISSN:
1047-8477
Idioma:
Inglés
Tipo de recurso:
Artículo publicado
Clasificación temática:
Resumen
Insoluble amyloid fibrils formed by self-assembly of amyloidogenic regions of proteins have a cross-β-structure. In this work, by using targeted molecular dynamics and rigid body simulation, we demonstrate that if a protein consists of an amyloidogenic region and a globular domain(s) and if the linker between them is short enough, such molecules cannot assemble into amyloid fibrils, instead, they form oligomers with a defined and limited number of β-strands in the cross-β core. We show that this blockage of the amyloid growth is due to the steric repulsion of the globular structures linked to amyloidogenic regions. Furthermore, we establish a relationship between the linker length and the number of monomers in such nanoparticles. We hypothesise that such oligomerisation can be a yet unrecognised way to form natural protein complexes involved in biological processes. Our results can also be used in protein engineering for designing soluble nanoparticles carrying different functional domains.
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Articulos(IMIBIO-SL)
Articulos de INST. MULTIDICIPLINARIO DE INV. BIO. DE SAN LUIS
Articulos de INST. MULTIDICIPLINARIO DE INV. BIO. DE SAN LUIS
Citación
Azizyan, Rafayel A.; Wang, Weiqiang; Anikeenko, Alexey; Radkova, Zinaida; Bakulina, Anastasia; et al.; Amyloidogenicity as a driving force for the formation of functional oligomers; Academic Press Inc Elsevier Science; Journal Of Structural Biology; 212; 1; 1-10-2020; 1-6; 107604
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