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Effects of the Known Pathogenic Mutations on the Aggregation Pathway of the Amyloidogenic Peptide of Apolipoprotein A-I

Authors :
Daniela Nichino
Sara Raimondi
Renata Piccoli
Paul Robustelli
Silvia Maria Doglia
Giampaolo Merlini
Angela Arciello
Sofia Giorgetti
Palma Mangione
Christopher M. Dobson
Sonia Di Gaetano
Antonino Natalello
Gian Gaetano Tartaglia
Monica Stoppini
Annalisa Relini
Daria Maria Monti
Laura Obici
Piero Pucci
Michele Vendruscolo
Vittorio Bellotti
Fulvio Guglielmi
Raimondi, S
Guglielmi, F
Giorgetti, S
Gaetano, S
Arciello, A
Monti, D
Relini, A
Nichino, D
Doglia, S
Natalello, A
Pucci, P
Mangione, P
Obici, L
Merlini, G
Stoppini, M
Robustelli, P
Tartaglia, G
Vendruscolo, M
Dobson, C
Piccoli, R
Bellotti, V
Gaetano, Sd
Arciello, Angela
Monti, DARIA MARIA
Doglia, Sm
Pucci, Pietro
Tartaglia, Gg
Dobson, Cm
Piccoli, Renata
Bellotti, V.
Source :
Journal of Molecular Biology 407 (2011): 465–476. doi:10.1016/j.jmb.2011.01.044, info:cnr-pdr/source/autori:Raimondi S, Guglielmi F, Giorgetti S, Di Gaetano S, Arciello A, Monti DM,Relini A, Nichino D, Doglia SM, Natalello A, Pucci P, Mangione P, Obici L,Merlini G, Stoppini M, Robustelli P, Tartaglia GG, Vendruscolo M, Dobson CM,Piccoli R, Bellotti V/titolo:Effects of the known pathogenic mutations on theaggregation pathway of the amyloidogenic peptide of apolipoprotein A-I/doi:10.1016%2Fj.jmb.2011.01.044/rivista:Journal of Molecular Biology/anno:2011/pagina_da:465/pagina_a:476/intervallo_pagine:465–476/volume:407
Publication Year :
2011
Publisher :
Elsevier BV, 2011.

Abstract

The 93-residue N-terminal fragment of apolipoprotein A-I (ApoA-I) is the major constituent of fibrils isolated from patients affected by the amyloidosis caused by ApoA-I mutations. We have prepared eight polypeptides corresponding to all the currently known amyloidogenic variants of the N-terminal region of ApoA-I, other than a truncation mutation, and investigated their aggregation kinetics and the associated structural modifications. All the variants adopted a monomeric highly disordered structure in solution at neutral pH, whereas acidification of the solution induced an unstable α-helical conformation and the subsequent aggregation into the cross-β structure aggregate. Two mutations (Δ70-72 and L90P) almost abrogated the lag phase of the aggregation process, three mutations (Δ60-71, L75P, and W50R) significantly accelerated the aggregation rate by 2- to 3-fold, while the remaining three variants (L64P, L60R, and G26R) were not significantly different from the wild type. Therefore, an increase in aggregation propensity cannot explain per se the mechanism of the disease for all the variants. Prediction of the protection factors for hydrogen exchange in the native state of full-length protein reveals, in almost all the variants, an expansion of the conformational fluctuations that could favour the proteolytic cleavage and the release of the amyloidogenic peptide. Such an event seems to be a necessary prerequisite for ApoA-I fibrillogenesis in vivo, but the observed increased aggregation propensity of certain variants can have a strong influence on the severity of the disease, such as an earlier onset and a faster progression. © 2011 Elsevier Ltd. All rights reserved.

Details

ISSN :
00222836
Volume :
407
Database :
OpenAIRE
Journal :
Journal of Molecular Biology
Accession number :
edsair.doi.dedup.....1c00a8bd9658106980c4a1a373b86af3
Full Text :
https://doi.org/10.1016/j.jmb.2011.01.044