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Methionine oxidation in -synuclein inhibits its propensity for ordered secondary structure

Authors :
Erika Ponzini
Frank Sobott
Antonino Natalello
Rossana Rossi
Rita Grandori
Antonella De Palma
Lucilla Cerboni
Carlo Santambrogio
Pierluigi Mauri
Giuseppe Legname
Rani Moons
Joanna Narkiewicz
Albert Konijnenberg
Ponzini, E
De Palma, A
Cerboni, L
Natalello, A
Rossi, R
Moons, R
Konijnenberg, A
Narkiewicz, J
Legname, G
Sobott, F
Mauri, P
Santambrogio, C
Grandori, R
Source :
Journal of biological chemistry, The Journal of biological chemistry, Apr 5;294(14) (2019): 5657–5665. doi:10.1074/jbc.RA118.001907, info:cnr-pdr/source/autori:Erika Ponzini1, Antonella De Palma2, Lucilla Cerboni1, Antonino Natalello3, Rossana Rossi4, Rani Moons5, Albert Konijnenberg5, Joanna Narkiewicz6, Giuseppe Antonio Legname7, Frank Sobott8, Pierluigi Mauri4, Carlo Santambrogio1* and Rita Grandori9/titolo:Methionine oxidation in ?-synuclein inhibits its propensity for ordered secondary structure/doi:10.1074%2Fjbc.RA118.001907/rivista:The Journal of biological chemistry (Print)/anno:2019/pagina_da:5657/pagina_a:5665/intervallo_pagine:5657–5665/volume:Apr 5;294(14), Journal of biological chemistry (Online) 294 (2019): 5657–5665. doi:10.1074/jbc.RA118.001907, info:cnr-pdr/source/autori:Ponzini E, De Palma A, Cerboni L, Natalello A, Rossi R, Moons R, Konijnenberg A, Narkiewicz J, Legname G, Sobott F, Mauri P, Santambrogio C, Grandori R./titolo:Methionine oxidation in ?-synuclein inhibits its propensity for ordered secondary structure/doi:10.1074%2Fjbc.RA118.001907/rivista:Journal of biological chemistry (Online)/anno:2019/pagina_da:5657/pagina_a:5665/intervallo_pagine:5657–5665/volume:294
Publication Year :
2019
Publisher :
American Society for Biochemistry and Molecular Biology Inc., 2019.

Abstract

alpha-Synuclein (AS) is an intrinsically disordered protein highly expressed in dopaminergic neurons. Its amyloid aggregates are the major component of Lewy bodies, a hallmark of Parkinson's disease (PD). AS is particularly exposed to oxidation of its methionine residues, both in vivo and in vitro. Oxidative stress has been implicated in PD and oxidized -synuclein has been shown to assemble into soluble, toxic oligomers, rather than amyloid fibrils. However, the structural effects of methionine oxidation are still poorly understood. In this work, oxidized AS was obtained by prolonged incubations with dopamine (DA) or epigallocatechin-3-gallate (EGCG), two inhibitors of AS aggregation, indicating that EGCG promotes the same final oxidation product as DA. The conformational transitions of the oxidized and non-oxidized protein were monitored by complementary biophysical techniques, including MS, ion mobility (IM), CD, and FTIR spectroscopy assays. Although the two variants displayed very similar structures under conditions that stabilize highly disordered or highly ordered states, differences emerged in the intermediate points of transitions induced by organic solvents, such as trifluoroethanol (TFE) and methanol (MeOH), indicating a lower propensity of the oxidized protein for forming either - or -type secondary structures. Furthermore, oxidized AS displayed restricted secondary-structure transitions in response to dehydration and slightly amplified tertiary-structure transitions induced by ligand binding. This difference in susceptibility to induced folding could explain the loss of fibrillation potential observed for oxidized AS. Finally, site-specific oxidation kinetics point out a minor delay in Met-127 modification, likely due to the effects of AS intrinsic structure.

Details

Language :
English
ISSN :
00219258
Database :
OpenAIRE
Journal :
Journal of biological chemistry, The Journal of biological chemistry, Apr 5;294(14) (2019): 5657–5665. doi:10.1074/jbc.RA118.001907, info:cnr-pdr/source/autori:Erika Ponzini1, Antonella De Palma2, Lucilla Cerboni1, Antonino Natalello3, Rossana Rossi4, Rani Moons5, Albert Konijnenberg5, Joanna Narkiewicz6, Giuseppe Antonio Legname7, Frank Sobott8, Pierluigi Mauri4, Carlo Santambrogio1* and Rita Grandori9/titolo:Methionine oxidation in ?-synuclein inhibits its propensity for ordered secondary structure/doi:10.1074%2Fjbc.RA118.001907/rivista:The Journal of biological chemistry (Print)/anno:2019/pagina_da:5657/pagina_a:5665/intervallo_pagine:5657–5665/volume:Apr 5;294(14), Journal of biological chemistry (Online) 294 (2019): 5657–5665. doi:10.1074/jbc.RA118.001907, info:cnr-pdr/source/autori:Ponzini E, De Palma A, Cerboni L, Natalello A, Rossi R, Moons R, Konijnenberg A, Narkiewicz J, Legname G, Sobott F, Mauri P, Santambrogio C, Grandori R./titolo:Methionine oxidation in ?-synuclein inhibits its propensity for ordered secondary structure/doi:10.1074%2Fjbc.RA118.001907/rivista:Journal of biological chemistry (Online)/anno:2019/pagina_da:5657/pagina_a:5665/intervallo_pagine:5657–5665/volume:294
Accession number :
edsair.doi.dedup.....8415707babbd98a8f4da97e49c9f805f
Full Text :
https://doi.org/10.1074/jbc.RA118.001907