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Pharmacometabolomic signature of ataxia SCA1 mouse model and lithium effects.

Publication ,  Journal Article
Perroud, B; Jafar-Nejad, P; Wikoff, WR; Gatchel, JR; Wang, L; Barupal, DK; Crespo-Barreto, J; Fiehn, O; Zoghbi, HY; Kaddurah-Daouk, R
Published in: PLoS One
2013

We have shown that lithium treatment improves motor coordination in a spinocerebellar ataxia type 1 (SCA1) disease mouse model (Sca1(154Q/+)). To learn more about disease pathogenesis and molecular contributions to the neuroprotective effects of lithium, we investigated metabolomic profiles of cerebellar tissue and plasma from SCA1-model treated and untreated mice. Metabolomic analyses of wild-type and Sca1(154Q/+) mice, with and without lithium treatment, were performed using gas chromatography time-of-flight mass spectrometry and BinBase mass spectral annotations. We detected 416 metabolites, of which 130 were identified. We observed specific metabolic perturbations in Sca1(154Q/+) mice and major effects of lithium on metabolism, centrally and peripherally. Compared to wild-type, Sca1(154Q/+) cerebella metabolic profile revealed changes in glucose, lipids, and metabolites of the tricarboxylic acid cycle and purines. Fewer metabolic differences were noted in Sca1(154Q/+) mouse plasma versus wild-type. In both genotypes, the major lithium responses in cerebellum involved energy metabolism, purines, unsaturated free fatty acids, and aromatic and sulphur-containing amino acids. The largest metabolic difference with lithium was a 10-fold increase in ascorbate levels in wild-type cerebella (p<0.002), with lower threonate levels, a major ascorbate catabolite. In contrast, Sca1(154Q/+) mice that received lithium showed no elevated cerebellar ascorbate levels. Our data emphasize that lithium regulates a variety of metabolic pathways, including purine, oxidative stress and energy production pathways. The purine metabolite level, reduced in the Sca1(154Q/+) mice and restored upon lithium treatment, might relate to lithium neuroprotective properties.

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Published In

PLoS One

DOI

EISSN

1932-6203

Publication Date

2013

Volume

8

Issue

8

Start / End Page

e70610

Location

United States

Related Subject Headings

  • Mice, Knockout
  • Mice, Inbred C57BL
  • Mice
  • Metabolomics
  • Metabolome
  • Membrane Proteins
  • Male
  • Lithium
  • General Science & Technology
  • Gas Chromatography-Mass Spectrometry
 

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Perroud, B., Jafar-Nejad, P., Wikoff, W. R., Gatchel, J. R., Wang, L., Barupal, D. K., … Kaddurah-Daouk, R. (2013). Pharmacometabolomic signature of ataxia SCA1 mouse model and lithium effects. PLoS One, 8(8), e70610. https://doi.org/10.1371/journal.pone.0070610
Perroud, Bertrand, Paymaan Jafar-Nejad, William R. Wikoff, Jennifer R. Gatchel, Lu Wang, Dinesh K. Barupal, Juan Crespo-Barreto, Oliver Fiehn, Huda Y. Zoghbi, and Rima Kaddurah-Daouk. “Pharmacometabolomic signature of ataxia SCA1 mouse model and lithium effects.PLoS One 8, no. 8 (2013): e70610. https://doi.org/10.1371/journal.pone.0070610.
Perroud B, Jafar-Nejad P, Wikoff WR, Gatchel JR, Wang L, Barupal DK, et al. Pharmacometabolomic signature of ataxia SCA1 mouse model and lithium effects. PLoS One. 2013;8(8):e70610.
Perroud, Bertrand, et al. “Pharmacometabolomic signature of ataxia SCA1 mouse model and lithium effects.PLoS One, vol. 8, no. 8, 2013, p. e70610. Pubmed, doi:10.1371/journal.pone.0070610.
Perroud B, Jafar-Nejad P, Wikoff WR, Gatchel JR, Wang L, Barupal DK, Crespo-Barreto J, Fiehn O, Zoghbi HY, Kaddurah-Daouk R. Pharmacometabolomic signature of ataxia SCA1 mouse model and lithium effects. PLoS One. 2013;8(8):e70610.

Published In

PLoS One

DOI

EISSN

1932-6203

Publication Date

2013

Volume

8

Issue

8

Start / End Page

e70610

Location

United States

Related Subject Headings

  • Mice, Knockout
  • Mice, Inbred C57BL
  • Mice
  • Metabolomics
  • Metabolome
  • Membrane Proteins
  • Male
  • Lithium
  • General Science & Technology
  • Gas Chromatography-Mass Spectrometry