TY - JOUR
T1 - Structural properties of polyglutamine aggregates investigated via molecular dynamics simulations
AU - Rossetti, Giulia
AU - Magistrato, Alessandra
AU - Pastore, Annalisa
AU - Persichetti, Francesca
AU - Carloni, Paolo
PY - 2008/12/25
Y1 - 2008/12/25
N2 - Polyglutamine (polyQ) β-stranded aggregates constitute the hallmark of Huntington disease. The disease is fully penetrant when Q residues are more than 36-40 ("disease threshold"). Here, based on a molecular dynamics study on polyQ helical structures of different shapes and oligomeric states, we suggest that the stability of the aggregates increases with the number of monomers, while it is rather insensitive to the number of Qs in each monomer. However, the stability of the single monomer does depend on the number of side-chain intramolecular H-bonds, and therefore on the number of Qs. If such number is lower than that of the disease threshold, the β-stranded monomers are unstable and hence may aggregate with lower probability, consistently with experimental findings. Our results provide a possible interpretation of the apparent polyQ length dependent-toxicity, and they do not support the so-called "structural threshold hypothesis", which supposes a transition from random coil to a β-sheet structure only above the disease threshold.
AB - Polyglutamine (polyQ) β-stranded aggregates constitute the hallmark of Huntington disease. The disease is fully penetrant when Q residues are more than 36-40 ("disease threshold"). Here, based on a molecular dynamics study on polyQ helical structures of different shapes and oligomeric states, we suggest that the stability of the aggregates increases with the number of monomers, while it is rather insensitive to the number of Qs in each monomer. However, the stability of the single monomer does depend on the number of side-chain intramolecular H-bonds, and therefore on the number of Qs. If such number is lower than that of the disease threshold, the β-stranded monomers are unstable and hence may aggregate with lower probability, consistently with experimental findings. Our results provide a possible interpretation of the apparent polyQ length dependent-toxicity, and they do not support the so-called "structural threshold hypothesis", which supposes a transition from random coil to a β-sheet structure only above the disease threshold.
UR - http://www.scopus.com/inward/record.url?scp=58149159523&partnerID=8YFLogxK
U2 - 10.1021/jp806548p
DO - 10.1021/jp806548p
M3 - Article
SN - 1520-6106
VL - 112
SP - 16843
EP - 16850
JO - Journal of Physical Chemistry B
JF - Journal of Physical Chemistry B
IS - 51
ER -