Cargando…

Molecular signature of cell cycle exit induced in human T lymphoblasts by IL-2 withdrawal

BACKGROUND: The molecular mechanisms of cell cycle exit are poorly understood. Studies on lymphocytes at cell cycle exit after growth factor deprivation have predominantly focused on the initiation of apoptosis. We aimed to study gene expression profile of primary and immortalised IL-2-dependent hum...

Descripción completa

Detalles Bibliográficos
Autores principales: Chechlinska, Magdalena, Siwicki, Jan Konrad, Gos, Monika, Oczko-Wojciechowska, Malgorzata, Jarzab, Michal, Pfeifer, Aleksandra, Jarzab, Barbara, Steffen, Jan
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2009
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2706892/
https://www.ncbi.nlm.nih.gov/pubmed/19505301
http://dx.doi.org/10.1186/1471-2164-10-261
_version_ 1782169111331078144
author Chechlinska, Magdalena
Siwicki, Jan Konrad
Gos, Monika
Oczko-Wojciechowska, Malgorzata
Jarzab, Michal
Pfeifer, Aleksandra
Jarzab, Barbara
Steffen, Jan
author_facet Chechlinska, Magdalena
Siwicki, Jan Konrad
Gos, Monika
Oczko-Wojciechowska, Malgorzata
Jarzab, Michal
Pfeifer, Aleksandra
Jarzab, Barbara
Steffen, Jan
author_sort Chechlinska, Magdalena
collection PubMed
description BACKGROUND: The molecular mechanisms of cell cycle exit are poorly understood. Studies on lymphocytes at cell cycle exit after growth factor deprivation have predominantly focused on the initiation of apoptosis. We aimed to study gene expression profile of primary and immortalised IL-2-dependent human T cells forced to exit the cell cycle by growth factor withdrawal, before apoptosis could be evidenced. RESULTS: By the Affymetrix microarrays HG-U133 2.0 Plus, 53 genes were distinguished as differentially expressed before and soon after IL-2 deprivation. Among those, PIM1, BCL2, IL-8, HBEGF, DUSP6, OSM, CISH, SOCS2, SOCS3, LIF and IL13 were down-regulated and RPS24, SQSTM1, TMEM1, LRRC8D, ECOP, YY1AP1, C1orf63, ASAH1, SLC25A46 and MIA3 were up-regulated. Genes linked to transcription, cell cycle, cell growth, proliferation and differentiation, cell adhesion, and immune functions were found to be overrepresented within the set of the differentially expressed genes. CONCLUSION: Cell cycle exit of the growth factor-deprived T lymphocytes is characterised by a signature of differentially expressed genes. A coordinate repression of a set of genes known to be induced during T cell activation is observed. However, growth arrest following exit from the cell cycle is actively controlled by several up-regulated genes that enforce the non-dividing state. The identification of genes involved in cell cycle exit and quiescence provides new hints for further studies on the molecular mechanisms regulating the non-dividing state of a cell, the mechanisms closely related to cancer development and to many biological processes.
format Text
id pubmed-2706892
institution National Center for Biotechnology Information
language English
publishDate 2009
publisher BioMed Central
record_format MEDLINE/PubMed
spelling pubmed-27068922009-07-08 Molecular signature of cell cycle exit induced in human T lymphoblasts by IL-2 withdrawal Chechlinska, Magdalena Siwicki, Jan Konrad Gos, Monika Oczko-Wojciechowska, Malgorzata Jarzab, Michal Pfeifer, Aleksandra Jarzab, Barbara Steffen, Jan BMC Genomics Research Article BACKGROUND: The molecular mechanisms of cell cycle exit are poorly understood. Studies on lymphocytes at cell cycle exit after growth factor deprivation have predominantly focused on the initiation of apoptosis. We aimed to study gene expression profile of primary and immortalised IL-2-dependent human T cells forced to exit the cell cycle by growth factor withdrawal, before apoptosis could be evidenced. RESULTS: By the Affymetrix microarrays HG-U133 2.0 Plus, 53 genes were distinguished as differentially expressed before and soon after IL-2 deprivation. Among those, PIM1, BCL2, IL-8, HBEGF, DUSP6, OSM, CISH, SOCS2, SOCS3, LIF and IL13 were down-regulated and RPS24, SQSTM1, TMEM1, LRRC8D, ECOP, YY1AP1, C1orf63, ASAH1, SLC25A46 and MIA3 were up-regulated. Genes linked to transcription, cell cycle, cell growth, proliferation and differentiation, cell adhesion, and immune functions were found to be overrepresented within the set of the differentially expressed genes. CONCLUSION: Cell cycle exit of the growth factor-deprived T lymphocytes is characterised by a signature of differentially expressed genes. A coordinate repression of a set of genes known to be induced during T cell activation is observed. However, growth arrest following exit from the cell cycle is actively controlled by several up-regulated genes that enforce the non-dividing state. The identification of genes involved in cell cycle exit and quiescence provides new hints for further studies on the molecular mechanisms regulating the non-dividing state of a cell, the mechanisms closely related to cancer development and to many biological processes. BioMed Central 2009-06-08 /pmc/articles/PMC2706892/ /pubmed/19505301 http://dx.doi.org/10.1186/1471-2164-10-261 Text en Copyright © 2009 Chechlinska 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
Chechlinska, Magdalena
Siwicki, Jan Konrad
Gos, Monika
Oczko-Wojciechowska, Malgorzata
Jarzab, Michal
Pfeifer, Aleksandra
Jarzab, Barbara
Steffen, Jan
Molecular signature of cell cycle exit induced in human T lymphoblasts by IL-2 withdrawal
title Molecular signature of cell cycle exit induced in human T lymphoblasts by IL-2 withdrawal
title_full Molecular signature of cell cycle exit induced in human T lymphoblasts by IL-2 withdrawal
title_fullStr Molecular signature of cell cycle exit induced in human T lymphoblasts by IL-2 withdrawal
title_full_unstemmed Molecular signature of cell cycle exit induced in human T lymphoblasts by IL-2 withdrawal
title_short Molecular signature of cell cycle exit induced in human T lymphoblasts by IL-2 withdrawal
title_sort molecular signature of cell cycle exit induced in human t lymphoblasts by il-2 withdrawal
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2706892/
https://www.ncbi.nlm.nih.gov/pubmed/19505301
http://dx.doi.org/10.1186/1471-2164-10-261
work_keys_str_mv AT chechlinskamagdalena molecularsignatureofcellcycleexitinducedinhumantlymphoblastsbyil2withdrawal
AT siwickijankonrad molecularsignatureofcellcycleexitinducedinhumantlymphoblastsbyil2withdrawal
AT gosmonika molecularsignatureofcellcycleexitinducedinhumantlymphoblastsbyil2withdrawal
AT oczkowojciechowskamalgorzata molecularsignatureofcellcycleexitinducedinhumantlymphoblastsbyil2withdrawal
AT jarzabmichal molecularsignatureofcellcycleexitinducedinhumantlymphoblastsbyil2withdrawal
AT pfeiferaleksandra molecularsignatureofcellcycleexitinducedinhumantlymphoblastsbyil2withdrawal
AT jarzabbarbara molecularsignatureofcellcycleexitinducedinhumantlymphoblastsbyil2withdrawal
AT steffenjan molecularsignatureofcellcycleexitinducedinhumantlymphoblastsbyil2withdrawal