Title of article :
Protein oxidation and degradation during proliferative senescence of human MRC-5 fibroblasts
Author/Authors :
Nicolle Sitte، نويسنده , , Katrin Merker، نويسنده , , Thomas von Zglinicki، نويسنده , , Tilman Grune، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2000
Pages :
8
From page :
701
To page :
708
Abstract :
One of the highlights of age-related changes of cellular metabolism is the accumulation of oxidized proteins. The aging process on a cellular level can be treated either as the ongoing proliferation until a certain number of cell divisions is reached (the Hayflick limit) or as the aging of nondividing cells, that is, the age-related changes in cells without proliferation. The present investigation was undertaken to reveal the changes in protein turnover, proteasome activity, and protein oxidation status during proliferative senescence. We were able to demonstrate that the activity of the cytosolic proteasomal system declines dramatically during the proliferative senescence of human MRC-5 fibroblasts. Regardless of the loss in activity, it could be demonstrated that there are no changes in the transcription and translation of proteasomal subunits. This decline in proteasome activity was accompanied by an increased concentration of oxidized proteins. Cells at higher proliferation stages were no longer able to respond with increased degradation of endogenous [35S]-Met-radiolabeled proteins after hydrogen peroxide– or quinone-induced oxidative stress. It could be demonstrated that oxidized proteins in senescent human MRC-5 fibroblasts are not as quickly removed as they are in young cells. Therefore, our study demonstrates that the accumulation of oxidized proteins and decline in protein turnover and activity of the proteasomal system are not only a process of postmitotic aging but also occur during proliferative senescence and result in an increased half-life of oxidized proteins.
Keywords :
free radical , protein oxidation , fibroblasts , Proteasome , Proliferative senescence
Journal title :
Free Radical Biology and Medicine
Serial Year :
2000
Journal title :
Free Radical Biology and Medicine
Record number :
518453
Link To Document :
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