Modulation of expression and cellular distribution of p21 by macrophage migration inhibitory factor

<p>Abstract</p> <p>Background</p> <p>The pleiotropic protein MIF, (macrophage migration inhibitory factor), has been demonstrated to modulate several key proteins governing cell cycle control and is considered to contribute to cell growth and differentiation. In this st...

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Main Authors: Morand Eric F, Xue Jin R, Taranto Elliott, Leech Michelle
Format: Article
Language:English
Published: BMC 2009-08-01
Series:Journal of Inflammation
Online Access:http://www.journal-inflammation.com/content/6/1/24
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spelling doaj-dfe4aaff8a8e4f769109f0ba17f134f62020-11-24T21:08:15ZengBMCJournal of Inflammation1476-92552009-08-01612410.1186/1476-9255-6-24Modulation of expression and cellular distribution of p21 by macrophage migration inhibitory factorMorand Eric FXue Jin RTaranto ElliottLeech Michelle<p>Abstract</p> <p>Background</p> <p>The pleiotropic protein MIF, (macrophage migration inhibitory factor), has been demonstrated to modulate several key proteins governing cell cycle control and is considered to contribute to cell growth and differentiation. In this study we investigated the effect of MIF on the expression and cellular distribution of the CDK inhibitor p21.</p> <p>Methods</p> <p>The effect of endogenous MIF on p21 expression and distribution was examined by comparing murine dermal fibroblasts derived from <it>wt </it>and MIF -/- mice. The effect of MIF on cell growth and apoptotic rates was compared using <sup>3</sup>H-Thymidine incorporation assays and annexin V/PI assays respectively. Total p21 protein levels were compared using flow cytometry and western blotting. p21 mRNA was assessed by RT-PCR. Intracellular p21 staining was performed to assess cellular distribution of total protein. To further confirm observations siRNA was used to knockdown MIF protein in <it>wt </it>cells. Cell cycle analysis was performed using PI incorporation assays.</p> <p>Results</p> <p>MIF-/- murine dermal fibroblasts exhibited reduced proliferative responses and were more susceptible to apoptosis. This was associated with reduced p21 expression and nuclear distribution. Treatment with recombinant MIF protein was demonstrated to reduce both basal and induced apoptosis and increase nuclear p21 expression. Reduced nuclear p21 expression was also observed in MIF siRNA treated <it>wt </it>cells.</p> <p>Conclusion</p> <p>The results demonstrate that in the absence of MIF p21 expression and nuclear distribution is reduced which is associated with a reduction in cell growth and increased apoptosis. MIF may therefore play a role in maintaining homeostatic control of p21.</p> http://www.journal-inflammation.com/content/6/1/24
collection DOAJ
language English
format Article
sources DOAJ
author Morand Eric F
Xue Jin R
Taranto Elliott
Leech Michelle
spellingShingle Morand Eric F
Xue Jin R
Taranto Elliott
Leech Michelle
Modulation of expression and cellular distribution of p21 by macrophage migration inhibitory factor
Journal of Inflammation
author_facet Morand Eric F
Xue Jin R
Taranto Elliott
Leech Michelle
author_sort Morand Eric F
title Modulation of expression and cellular distribution of p21 by macrophage migration inhibitory factor
title_short Modulation of expression and cellular distribution of p21 by macrophage migration inhibitory factor
title_full Modulation of expression and cellular distribution of p21 by macrophage migration inhibitory factor
title_fullStr Modulation of expression and cellular distribution of p21 by macrophage migration inhibitory factor
title_full_unstemmed Modulation of expression and cellular distribution of p21 by macrophage migration inhibitory factor
title_sort modulation of expression and cellular distribution of p21 by macrophage migration inhibitory factor
publisher BMC
series Journal of Inflammation
issn 1476-9255
publishDate 2009-08-01
description <p>Abstract</p> <p>Background</p> <p>The pleiotropic protein MIF, (macrophage migration inhibitory factor), has been demonstrated to modulate several key proteins governing cell cycle control and is considered to contribute to cell growth and differentiation. In this study we investigated the effect of MIF on the expression and cellular distribution of the CDK inhibitor p21.</p> <p>Methods</p> <p>The effect of endogenous MIF on p21 expression and distribution was examined by comparing murine dermal fibroblasts derived from <it>wt </it>and MIF -/- mice. The effect of MIF on cell growth and apoptotic rates was compared using <sup>3</sup>H-Thymidine incorporation assays and annexin V/PI assays respectively. Total p21 protein levels were compared using flow cytometry and western blotting. p21 mRNA was assessed by RT-PCR. Intracellular p21 staining was performed to assess cellular distribution of total protein. To further confirm observations siRNA was used to knockdown MIF protein in <it>wt </it>cells. Cell cycle analysis was performed using PI incorporation assays.</p> <p>Results</p> <p>MIF-/- murine dermal fibroblasts exhibited reduced proliferative responses and were more susceptible to apoptosis. This was associated with reduced p21 expression and nuclear distribution. Treatment with recombinant MIF protein was demonstrated to reduce both basal and induced apoptosis and increase nuclear p21 expression. Reduced nuclear p21 expression was also observed in MIF siRNA treated <it>wt </it>cells.</p> <p>Conclusion</p> <p>The results demonstrate that in the absence of MIF p21 expression and nuclear distribution is reduced which is associated with a reduction in cell growth and increased apoptosis. MIF may therefore play a role in maintaining homeostatic control of p21.</p>
url http://www.journal-inflammation.com/content/6/1/24
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