Title of article :
Conserved C-Terminal Charge Exerts a Profound Influence on the Aggregation Rate of α-Synuclein
Author/Authors :
Katerina Levitan، نويسنده , , David Chereau، نويسنده , , Samuel I.A. Cohen، نويسنده , , Tuomas P.J. Knowles، نويسنده , , Christopher M. Dobson، نويسنده , , Anthony L. Fink، نويسنده , , John P. Anderson، نويسنده , , Jason M. Goldstein، نويسنده , , Glenn L. Millhauser، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2011
Abstract :
α-Synuclein (α-syn) is the major component of filamentous Lewy bodies found in the brains of patients diagnosed with Parkinsonʹs disease (PD). Recent studies demonstrate that, in addition to the wild-type sequence, α-syn is found in several modified forms, including truncated and phosphorylated species. Although the mechanism by which the neuronal loss in PD occurs is unknown, aggregation and fibril formation of α-syn are considered to be key pathological features. In this study, we analyze the rates of fibril formation and the monomer–fibril equilibrium for eight disease-associated truncated and phosphorylated α-syn variants. Comparison of the relative rates of aggregation reveals a strong monotonic relationship between the C-terminal charge of α-syn and the lag time prior to the observation of fibril formation, with truncated species exhibiting the fastest aggregation rates. Moreover, we find that a decrease in C-terminal charge shifts the equilibrium to favor the fibrillar species. An analysis of these findings in the context of linear growth theories suggests that the loss of the charge-mediated stabilization of the soluble state is responsible for the enhanced aggregation rate and increased extent of fibril fraction. Therefore, C-terminal charge is kinetically and thermodynamically protective against α-syn polymerization and may provide a target for the treatment of PD.
Keywords :
Parkinsonיs disease , posttranslational modification , Aggregation , linear growth theory , ?-synuclein
Journal title :
Journal of Molecular Biology
Journal title :
Journal of Molecular Biology