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Age-related subproteomic analysis of mouse liver and kidney peroxisomes

Mi, Jia (författare)
Uppsala universitet,Institutionen för cell- och molekylärbiologi
Garcia-Arcos, Itsaso (författare)
Uppsala universitet,Institutionen för cell- och molekylärbiologi
Alvarez, Ruben (författare)
visa fler...
Cristobal, Susana (författare)
Uppsala universitet,Institutionen för cell- och molekylärbiologi
visa färre...
 (creator_code:org_t)
2007-11-27
2007
Engelska.
Ingår i: Proteome Science. - : Springer Science and Business Media LLC. - 1477-5956. ; 5, s. 19-
  • Tidskriftsartikel (refereegranskat)
Abstract Ämnesord
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  • Background: Despite major recent advances in the understanding of peroxisomal functions and how peroxisomes arise, only scant information is available regarding this organelle in cellular aging. The aim of this study was to characterize the changes in the protein expression profile of aged versus young liver and kidney peroxisome-enriched fractions from mouse and to suggest possible mechanisms underlying peroxisomal aging. Peroxisome-enriched fractions from 10 weeks, 18 months and 24 months C57bl/6J mice were analyzed by quantitative proteomics. Results: Peroxisomal proteins were enriched by differential and density gradient centrifugation and proteins were separated by two-dimensional electrophoresis (2-DE), quantified and identified by mass spectrometry (MS). In total, sixty-five proteins were identified in both tissues. Among them, 14 proteins were differentially expressed in liver and 21 proteins in kidney. The eight proteins differentially expressed in both tissues were involved in beta-oxidation, alpha-oxidation, isoprenoid biosynthesis, amino acid metabolism, and stress response. Quantitative proteomics, clustering methods, and prediction of transcription factors, all indicated that there is a decline in protein expression at 18 months and a recovery at 24 months. Conclusion: These results indicate that some peroxisomal proteins show a tissue-specific functional response to aging. This response is probably dependent on their differential regeneration capacity. The differentially expressed proteins could lead several cellular effects: such as alteration of fatty acid metabolism that could alert membrane protein functions, increase of the oxidative stress and contribute to decline in bile salt synthesis. The ability to detect age-related variations in the peroxisomal proteome can help in the search for reliable and valid aging biomarkers.

Ämnesord

NATURVETENSKAP  -- Biologi (hsv//swe)
NATURAL SCIENCES  -- Biological Sciences (hsv//eng)

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Biology
Biologi

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Av författaren/redakt...
Mi, Jia
Garcia-Arcos, It ...
Alvarez, Ruben
Cristobal, Susan ...
Om ämnet
NATURVETENSKAP
NATURVETENSKAP
och Biologi
Artiklar i publikationen
Proteome Science
Av lärosätet
Uppsala universitet

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