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Multiscale Aggregation of the Amyloid Aβ Peptide: From Disordered Coagulation and Lateral Branching to Amorphous Prefibrils. | LitMetric

Multiscale Aggregation of the Amyloid Aβ Peptide: From Disordered Coagulation and Lateral Branching to Amorphous Prefibrils.

J Phys Chem Lett

Laboratoire de Biochimie Théorique, IBPC, CNRS UPR9080 , Univ. Paris Diderot, Sorbonne Paris Cité , 13 rue Pierre et Marie Curie , 75005 Paris , France.

Published: April 2019

In this work we investigate the multiscale dynamics of the aggregation process of an amyloid peptide, Aβ. By performing massive coarse-grained simulations at the quasi-atomistic resolution and including hydrodynamic effects, we followed the formation and growth of a large elongated aggregate and its slow structuring. The elongation proceeds via a two-step nucleation mechanism with disordered aggregates formed initially and subsequently fusing to elongate the amorphous prefibril. A variety of coagulation events coexist, including lateral growth. The latter mechanism, sustained by long-range hydrodynamics correlations, actually can create a large branched structure spanning a few tens of nanometers. Our findings confirm the experimental hypothesis of a critical contribution of lateral growth to the amyloid aggregation kinetics and the capability of our model to sample critical structures like prefibril hosting annular pores.

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Source
http://dx.doi.org/10.1021/acs.jpclett.9b00423DOI Listing

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