Literature DB >> 17900761

Nitration of soluble proteins in organotypic culture models of Parkinson's disease.

Trine R Larsen1, Ann-Sofi Söderling, Kenneth Caidahl, Peter Roepstorff, Jan Bert Gramsbergen.   

Abstract

Protein nitration due to oxidative and nitrative stress has been linked to the pathogenesis of Parkinson's disease (PD), but its relationship to the loss of dopamine (DA) or tyrosine hydroxylase (TH) activity is not clear. Here we quantified protein-bound 3-nitrotyrosine (3-NT) by a novel gas chromatography/negative chemical ionization tandem mass spectrometry technique and DA and 3,4-dihydroxyphenylalanine (DOPA) by HPLC in tissues or medium of organotypic, mouse mesencephalon cultures after acute or chronic treatments with the peroxynitrite donor 3-morpholino-sydnonimine (SIN-1), the dopaminergic toxin 1-methyl-4-phenylpyridinium (MPP(+)) or the lipophilic complex I inhibitor rotenone. Incubation with SIN-1 (24 h) or MPP(+) treatments (48 h) caused dose-dependent protein nitration reaching a maximum of eightfold increase by 10 mM SIN-1 or twofold by 10 microM MPP(+), but significant DA depletions occurred at much lower concentrations of MPP(+) (1 microM). Chronic MPP(+) or rotenone treatments (3 weeks) caused maximum protein nitration by 1 microM (twofold) or 10nM (fourfold), respectively. Co-treatment with the nitric oxide synthase inhibitor l-NAME (300 microM) prevented protein nitration by MPP(+), but did not protect against MPP(+)-induced DA depletion or inhibition of TH activity. Acute incubation with 100 microM SIN-1 inhibited TH activity, which could be blocked by co-treatment with the tetrahydrobiopterin precursor l-sepiapterin, but tissue DA depletions required higher doses of SIN-1 (>1 mM, 24 h) and longer survival. In conclusion, protein nitration and TH activity or DA depletion are not directly related in these models.

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Year:  2007        PMID: 17900761     DOI: 10.1016/j.neuint.2007.08.008

Source DB:  PubMed          Journal:  Neurochem Int        ISSN: 0197-0186            Impact factor:   3.921


  9 in total

1.  Identification of nitrotyrosine containing peptides using combined fractional diagonal chromatography (COFRADIC) and off-line nano-LC-MALDI.

Authors:  Trine R Larsen; Nicolai Bache; Jan Bert Gramsbergen; Peter Roepstorff
Journal:  J Am Soc Mass Spectrom       Date:  2011-03-08       Impact factor: 3.109

2.  Age-related changes in nitric oxide synthase in the lateral geniculate nucleus of rats.

Authors:  Seung-Jun Hwang; Youngbuhm Huh
Journal:  J Mol Histol       Date:  2010-05-17       Impact factor: 2.611

3.  Fluorogenic tagging of protein 3-nitrotyrosine with 4-(aminomethyl)benzene sulfonate in tissues: a useful alternative to Immunohistochemistry for fluorescence microscopy imaging of protein nitration.

Authors:  V S Sharov; R Pal; E S Dremina; E K Michaelis; C Schöneich
Journal:  Free Radic Biol Med       Date:  2012-08-31       Impact factor: 7.376

4.  Phospholipase A2, oxidative stress, and neurodegeneration in binge ethanol-treated organotypic slice cultures of developing rat brain.

Authors:  Kwan-Hoon Moon; Nuzhath Tajuddin; James Brown; Edward J Neafsey; Hee-Yong Kim; Michael A Collins
Journal:  Alcohol Clin Exp Res       Date:  2013-08-01       Impact factor: 3.455

Review 5.  Mimicking Parkinson's Disease in a Dish: Merits and Pitfalls of the Most Commonly used Dopaminergic In Vitro Models.

Authors:  Fernanda Martins Lopes; Ivi Juliana Bristot; Leonardo Lisbôa da Motta; Richard B Parsons; Fabio Klamt
Journal:  Neuromolecular Med       Date:  2017-07-18       Impact factor: 3.843

6.  Nitric oxide inactivation mechanisms in the brain: role in bioenergetics and neurodegeneration.

Authors:  Ricardo M Santos; Cátia F Lourenço; Ana Ledo; Rui M Barbosa; João Laranjinha
Journal:  Int J Cell Biol       Date:  2012-06-10

7.  Influence of oxygen tension on dopaminergic differentiation of human fetal stem cells of midbrain and forebrain origin.

Authors:  Christina Krabbe; Sara Thornby Bak; Pia Jensen; Christian von Linstow; Alberto Martínez Serrano; Claus Hansen; Morten Meyer
Journal:  PLoS One       Date:  2014-05-02       Impact factor: 3.240

Review 8.  Biomarker Research in Parkinson's Disease Using Metabolite Profiling.

Authors:  Jesper F Havelund; Niels H H Heegaard; Nils J K Færgeman; Jan Bert Gramsbergen
Journal:  Metabolites       Date:  2017-08-11

9.  Inhibition of i-NOS but not n-NOS protects rat primary cell cultures against MPP(+)-induced neuronal toxicity.

Authors:  Monika J Brzozowski; Peter Jenner; Sarah Rose
Journal:  J Neural Transm (Vienna)       Date:  2014-12-13       Impact factor: 3.575

  9 in total

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