Neuroscience Letters 2013-01-15

Induction of methionine sulfoxide reductase activity by pergolide, pergolide sulfoxide, and S-adenosyl-methionine in neuronal cells.

Jade M Franklin, Gonzalo A Carrasco, Jackob Moskovitz

文献索引:Neurosci. Lett. 533 , 86-9, (2013)

全文:HTML全文

摘要

The reduction of methionine sulfoxide in proteins is facilitated by the methionine sulfoxide reductase (Msr) system. The Msr reduction activity is important for protecting cells from oxidative stress related damages. Indeed, we have recently shown that treatment of cells with N-acetyl-methionine sulfoxide can increase Msr activity and protect neuronal cells from amyloid beta toxicity. Thus, in search of other similar Msr-inducing molecules, we examined the effects of pergolide, pergolide sulfoxide, and S-adenosyl-methionine on Msr activity in neuronal cells. Treatment of neuronal cells with a physiological range of pergolide and pergolide sulfoxide (0.5-1.0 μM) caused an increase of about 40% in total Msr activity compared with non-treated control cells. This increase in activity correlated with similar increases in methionine sulfoxide reductase A protein expression levels. Similarly, treatment of cells with S-adenosyl methionine also increased cellular Msr activity, which was milder compared to increases induced by pergolide and pergolide sulfoxide. We found that all the examined compounds are able to increase cellular Msr activity to levels comparable to N-acetyl-methionine sulfoxide treatment. Pergolide, pergolide sulfoxide, and S-adenosyl methionine can cross the blood-brain barrier. Therefore, we hypothesize that they can be useful in the treatment of symptoms/pathologies that are associated with reduced Msr activity.Copyright © 2012 Elsevier Ireland Ltd. All rights reserved.


相关化合物

  • L-乙硫胺酸
  • 甲磺酸培高利特

相关文献:

Translating clinical findings into knowledge in drug safety evaluation--drug induced liver injury prediction system (DILIps).

2011-12-01

[J. Sci. Ind. Res. 65(10) , 808, (2006)]

The Japanese toxicogenomics project: application of toxicogenomics.

2010-02-01

[Mol. Nutr. Food. Res. 54 , 218-27, (2010)]

Developing structure-activity relationships for the prediction of hepatotoxicity.

2010-07-19

[Chem. Res. Toxicol. 23 , 1215-22, (2010)]

A predictive ligand-based Bayesian model for human drug-induced liver injury.

2010-12-01

[Drug Metab. Dispos. 38 , 2302-8, (2010)]

Evaluation of a published in silico model and construction of a novel Bayesian model for predicting phospholipidosis inducing potential.

2007-01-01

[J. Chem. Inf. Model. 47 , 1196-205, (2007)]

更多文献...