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The differentiation/retrodifferentiation program of human U937 leukemia cells is accompanied by changes of VCP/p97

BACKGROUND: Retrodifferentiation and regained proliferative capacity of growth-arrested human leukemic cells after monocyte-like differentiation requires proteolytic activities together with distinct regulatory factors. The AAA ATPase valosin-containing protein (VCP/p97) contributes to protein degra...

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Autores principales: Bertram, Catharina, von Neuhoff, Nils, Skawran, Britta, Steinemann, Doris, Schlegelberger, Brigitte, Hass, Ralf
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2008
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2277395/
https://www.ncbi.nlm.nih.gov/pubmed/18279508
http://dx.doi.org/10.1186/1471-2121-9-12
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author Bertram, Catharina
von Neuhoff, Nils
Skawran, Britta
Steinemann, Doris
Schlegelberger, Brigitte
Hass, Ralf
author_facet Bertram, Catharina
von Neuhoff, Nils
Skawran, Britta
Steinemann, Doris
Schlegelberger, Brigitte
Hass, Ralf
author_sort Bertram, Catharina
collection PubMed
description BACKGROUND: Retrodifferentiation and regained proliferative capacity of growth-arrested human leukemic cells after monocyte-like differentiation requires proteolytic activities together with distinct regulatory factors. The AAA ATPase valosin-containing protein (VCP/p97) contributes to protein degradation and cell cycle regulation, respectively, and it was of interest to study a possible role of VCP/p97 during this myelomonocytic differentiation and retrodifferentiation. RESULTS: Separation of autonomously proliferating human U937 myeloid leukemia cells by centrifugal elutriation demonstrated unaltered VCP/p97 expression levels throughout distinct phases of the cell cycle. However, phorbol ester-induced G(0)/G(1 )cell cycle arrest in differentiating human U937 leukemia cells was associated with a significantly increased protein and mRNA amount of this AAA ATPase. These elevated VCP/p97 levels progressively decreased again when growth-arrested U937 cells entered a retrodifferentiation program and returned to the tumorigenic phenotype. Whereas VCP/p97 was observed predominantly in the cytosol of U937 tumor and retrodifferentiated cells, a significant nuclear accumulation appeared during differentiation and G(0)/G(1) growth arrest. Analysis of subcellular compartments by immunoprecipitations and 2D Western blots substantiated these findings and revealed furthermore a tyrosine-specific phosphorylation of VCP/p97 in the cytosolic but not in the nuclear fractions. These altered tyrosine phosphorylation levels, according to distinct subcellular distributions, indicated a possible functional involvement of VCP/p97 in the leukemic differentiation process. Indeed, a down-modulation of VCP/p97 protein by siRNA revealed a reduced expression of differentiation-associated genes in subsequent DNA microarray analysis. Moreover, DNA-binding and proliferation-associated genes, which are down-regulated during differentiation of the leukemic cells, demonstrated elevated levels in the VCP/p97 siRNA transfectants. CONCLUSION: The findings demonstrated that monocytic differentiation and G(0)/G(1 )growth arrest in human U937 leukemia cells was accompanied by an increase in VCP/p97 expression and a distinct subcellular distribution to be reverted during retrodifferentiation. Together with a down-modulation of VCP/p97 by siRNA, these results suggested an association of this AAA ATPase in the differentiation/retrodifferentiation program.
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spelling pubmed-22773952008-04-01 The differentiation/retrodifferentiation program of human U937 leukemia cells is accompanied by changes of VCP/p97 Bertram, Catharina von Neuhoff, Nils Skawran, Britta Steinemann, Doris Schlegelberger, Brigitte Hass, Ralf BMC Cell Biol Research Article BACKGROUND: Retrodifferentiation and regained proliferative capacity of growth-arrested human leukemic cells after monocyte-like differentiation requires proteolytic activities together with distinct regulatory factors. The AAA ATPase valosin-containing protein (VCP/p97) contributes to protein degradation and cell cycle regulation, respectively, and it was of interest to study a possible role of VCP/p97 during this myelomonocytic differentiation and retrodifferentiation. RESULTS: Separation of autonomously proliferating human U937 myeloid leukemia cells by centrifugal elutriation demonstrated unaltered VCP/p97 expression levels throughout distinct phases of the cell cycle. However, phorbol ester-induced G(0)/G(1 )cell cycle arrest in differentiating human U937 leukemia cells was associated with a significantly increased protein and mRNA amount of this AAA ATPase. These elevated VCP/p97 levels progressively decreased again when growth-arrested U937 cells entered a retrodifferentiation program and returned to the tumorigenic phenotype. Whereas VCP/p97 was observed predominantly in the cytosol of U937 tumor and retrodifferentiated cells, a significant nuclear accumulation appeared during differentiation and G(0)/G(1) growth arrest. Analysis of subcellular compartments by immunoprecipitations and 2D Western blots substantiated these findings and revealed furthermore a tyrosine-specific phosphorylation of VCP/p97 in the cytosolic but not in the nuclear fractions. These altered tyrosine phosphorylation levels, according to distinct subcellular distributions, indicated a possible functional involvement of VCP/p97 in the leukemic differentiation process. Indeed, a down-modulation of VCP/p97 protein by siRNA revealed a reduced expression of differentiation-associated genes in subsequent DNA microarray analysis. Moreover, DNA-binding and proliferation-associated genes, which are down-regulated during differentiation of the leukemic cells, demonstrated elevated levels in the VCP/p97 siRNA transfectants. CONCLUSION: The findings demonstrated that monocytic differentiation and G(0)/G(1 )growth arrest in human U937 leukemia cells was accompanied by an increase in VCP/p97 expression and a distinct subcellular distribution to be reverted during retrodifferentiation. Together with a down-modulation of VCP/p97 by siRNA, these results suggested an association of this AAA ATPase in the differentiation/retrodifferentiation program. BioMed Central 2008-02-15 /pmc/articles/PMC2277395/ /pubmed/18279508 http://dx.doi.org/10.1186/1471-2121-9-12 Text en Copyright © 2008 Bertram et al; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License ( (http://creativecommons.org/licenses/by/2.0) ), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Bertram, Catharina
von Neuhoff, Nils
Skawran, Britta
Steinemann, Doris
Schlegelberger, Brigitte
Hass, Ralf
The differentiation/retrodifferentiation program of human U937 leukemia cells is accompanied by changes of VCP/p97
title The differentiation/retrodifferentiation program of human U937 leukemia cells is accompanied by changes of VCP/p97
title_full The differentiation/retrodifferentiation program of human U937 leukemia cells is accompanied by changes of VCP/p97
title_fullStr The differentiation/retrodifferentiation program of human U937 leukemia cells is accompanied by changes of VCP/p97
title_full_unstemmed The differentiation/retrodifferentiation program of human U937 leukemia cells is accompanied by changes of VCP/p97
title_short The differentiation/retrodifferentiation program of human U937 leukemia cells is accompanied by changes of VCP/p97
title_sort differentiation/retrodifferentiation program of human u937 leukemia cells is accompanied by changes of vcp/p97
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2277395/
https://www.ncbi.nlm.nih.gov/pubmed/18279508
http://dx.doi.org/10.1186/1471-2121-9-12
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