Systematic comparison of the effects of alpha-synuclein mutations on its oligomerization and aggregation.
Aggregation of alpha-synuclein (ASYN) in Lewy bodies and Lewy neurites is the typical pathological hallmark of Parkinson's disease (PD) and other synucleinopathies. Furthermore, mutations in the gene encoding for ASYN are associated with familial and sporadic forms of PD, suggesting this protei...
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2014-11-01
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doaj-6f0d371ab8a34e379f185ecad802768c2020-11-24T21:39:14ZengPublic Library of Science (PLoS)PLoS Genetics1553-73901553-74042014-11-011011e100474110.1371/journal.pgen.1004741Systematic comparison of the effects of alpha-synuclein mutations on its oligomerization and aggregation.Diana F LázaroEva F RodriguesRamona LangohrHedieh ShahpasandzadehThales RibeiroPatrícia GuerreiroEllen GerhardtKatharina KröhnertJochen KluckenMarcos D PereiraBlagovesta PopovaNiels KruseBrit MollenhauerSilvio O RizzoliGerhard H BrausKarin M DanzerTiago F OuteiroAggregation of alpha-synuclein (ASYN) in Lewy bodies and Lewy neurites is the typical pathological hallmark of Parkinson's disease (PD) and other synucleinopathies. Furthermore, mutations in the gene encoding for ASYN are associated with familial and sporadic forms of PD, suggesting this protein plays a central role in the disease. However, the precise contribution of ASYN to neuronal dysfunction and death is unclear. There is intense debate about the nature of the toxic species of ASYN and little is known about the molecular determinants of oligomerization and aggregation of ASYN in the cell. In order to clarify the effects of different mutations on the propensity of ASYN to oligomerize and aggregate, we assembled a panel of 19 ASYN variants and compared their behaviour. We found that familial mutants linked to PD (A30P, E46K, H50Q, G51D and A53T) exhibited identical propensities to oligomerize in living cells, but had distinct abilities to form inclusions. While the A30P mutant reduced the percentage of cells with inclusions, the E46K mutant had the opposite effect. Interestingly, artificial proline mutants designed to interfere with the helical structure of the N-terminal domain, showed increased propensity to form oligomeric species rather than inclusions. Moreover, lysine substitution mutants increased oligomerization and altered the pattern of aggregation. Altogether, our data shed light into the molecular effects of ASYN mutations in a cellular context, and established a common ground for the study of genetic and pharmacological modulators of the aggregation process, opening new perspectives for therapeutic intervention in PD and other synucleinopathies.http://europepmc.org/articles/PMC4230739?pdf=render |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Diana F Lázaro Eva F Rodrigues Ramona Langohr Hedieh Shahpasandzadeh Thales Ribeiro Patrícia Guerreiro Ellen Gerhardt Katharina Kröhnert Jochen Klucken Marcos D Pereira Blagovesta Popova Niels Kruse Brit Mollenhauer Silvio O Rizzoli Gerhard H Braus Karin M Danzer Tiago F Outeiro |
spellingShingle |
Diana F Lázaro Eva F Rodrigues Ramona Langohr Hedieh Shahpasandzadeh Thales Ribeiro Patrícia Guerreiro Ellen Gerhardt Katharina Kröhnert Jochen Klucken Marcos D Pereira Blagovesta Popova Niels Kruse Brit Mollenhauer Silvio O Rizzoli Gerhard H Braus Karin M Danzer Tiago F Outeiro Systematic comparison of the effects of alpha-synuclein mutations on its oligomerization and aggregation. PLoS Genetics |
author_facet |
Diana F Lázaro Eva F Rodrigues Ramona Langohr Hedieh Shahpasandzadeh Thales Ribeiro Patrícia Guerreiro Ellen Gerhardt Katharina Kröhnert Jochen Klucken Marcos D Pereira Blagovesta Popova Niels Kruse Brit Mollenhauer Silvio O Rizzoli Gerhard H Braus Karin M Danzer Tiago F Outeiro |
author_sort |
Diana F Lázaro |
title |
Systematic comparison of the effects of alpha-synuclein mutations on its oligomerization and aggregation. |
title_short |
Systematic comparison of the effects of alpha-synuclein mutations on its oligomerization and aggregation. |
title_full |
Systematic comparison of the effects of alpha-synuclein mutations on its oligomerization and aggregation. |
title_fullStr |
Systematic comparison of the effects of alpha-synuclein mutations on its oligomerization and aggregation. |
title_full_unstemmed |
Systematic comparison of the effects of alpha-synuclein mutations on its oligomerization and aggregation. |
title_sort |
systematic comparison of the effects of alpha-synuclein mutations on its oligomerization and aggregation. |
publisher |
Public Library of Science (PLoS) |
series |
PLoS Genetics |
issn |
1553-7390 1553-7404 |
publishDate |
2014-11-01 |
description |
Aggregation of alpha-synuclein (ASYN) in Lewy bodies and Lewy neurites is the typical pathological hallmark of Parkinson's disease (PD) and other synucleinopathies. Furthermore, mutations in the gene encoding for ASYN are associated with familial and sporadic forms of PD, suggesting this protein plays a central role in the disease. However, the precise contribution of ASYN to neuronal dysfunction and death is unclear. There is intense debate about the nature of the toxic species of ASYN and little is known about the molecular determinants of oligomerization and aggregation of ASYN in the cell. In order to clarify the effects of different mutations on the propensity of ASYN to oligomerize and aggregate, we assembled a panel of 19 ASYN variants and compared their behaviour. We found that familial mutants linked to PD (A30P, E46K, H50Q, G51D and A53T) exhibited identical propensities to oligomerize in living cells, but had distinct abilities to form inclusions. While the A30P mutant reduced the percentage of cells with inclusions, the E46K mutant had the opposite effect. Interestingly, artificial proline mutants designed to interfere with the helical structure of the N-terminal domain, showed increased propensity to form oligomeric species rather than inclusions. Moreover, lysine substitution mutants increased oligomerization and altered the pattern of aggregation. Altogether, our data shed light into the molecular effects of ASYN mutations in a cellular context, and established a common ground for the study of genetic and pharmacological modulators of the aggregation process, opening new perspectives for therapeutic intervention in PD and other synucleinopathies. |
url |
http://europepmc.org/articles/PMC4230739?pdf=render |
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