Literature DB >> 12414655

Characterization of epithelial senescence by serial analysis of gene expression: identification of genes potentially involved in prostate cancer.

Gerold Untergasser1, Heike B Koch, Antje Menssen, Heiko Hermeking.   

Abstract

Evasion of cellular senescence is required for the immortal phenotype of tumor cells. The tumor suppressor genes p16(INK4A), pRb, and p53 have been implicated in the induction of cellular senescence. To identify additional genes and pathways involved in the regulation of senescence in prostate epithelial cells (PrECs), we performed serial analysis of gene expression (SAGE). The gene expression pattern of human PrECs arrested because of senescence was compared with the pattern of early passage cells arrested because of confluence. A total of 144,137 SAGE tags representing 25,645 unique mRNA species was collected and analyzed: 157 mRNAs (70 with known function) were up-regulated and 116 (65 with known function) were down-regulated significantly in senescent PrECs (P < 0.05; fold difference >2.5). The differential regulation of an exemplary set of genes during senescence was confirmed by quantitative real-time PCR in PrECs derived from three different donors. The results presented here provide the molecular basis of the characteristic changes in morphology and proliferation observed in senescent PrECs. Furthermore, the differentially expressed genes identified in this report will be instrumental in the further analysis of cellular senescence in PrECs and may lead to the identification of tumor suppressor genes and proto-oncogenes involved in the development of prostate cancer.

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Year:  2002        PMID: 12414655

Source DB:  PubMed          Journal:  Cancer Res        ISSN: 0008-5472            Impact factor:   12.701


  25 in total

1.  Induction of the Cdk inhibitor p21 by LY83583 inhibits tumor cell proliferation in a p53-independent manner.

Authors:  Dimitri Lodygin; Antje Menssen; Heiko Hermeking
Journal:  J Clin Invest       Date:  2002-12       Impact factor: 14.808

2.  Senescent keratinocytes die by autophagic programmed cell death.

Authors:  Karo Gosselin; Emeric Deruy; Sébastien Martien; Chantal Vercamer; Fatima Bouali; Thibault Dujardin; Christian Slomianny; Ludivine Houel-Renault; Fazia Chelli; Yvan De Launoit; Corinne Abbadie
Journal:  Am J Pathol       Date:  2009-01-15       Impact factor: 4.307

3.  Gene expression profiling of replicative and induced senescence.

Authors:  Maggie Purcell; Adele Kruger; Michael A Tainsky
Journal:  Cell Cycle       Date:  2014       Impact factor: 4.534

4.  Androgen depletion induces senescence in prostate cancer cells through down-regulation of Skp2.

Authors:  Zuzana Pernicová; Eva Slabáková; Gvantsa Kharaishvili; Jan Bouchal; Milan Král; Zuzana Kunická; Miroslav Machala; Alois Kozubík; Karel Souček
Journal:  Neoplasia       Date:  2011-06       Impact factor: 5.715

Review 5.  Therapy-induced senescence in cancer.

Authors:  Jonathan A Ewald; Joshua A Desotelle; George Wilding; David F Jarrard
Journal:  J Natl Cancer Inst       Date:  2010-09-21       Impact factor: 13.506

6.  Senescence-induced alterations of laminin chain expression modulate tumorigenicity of prostate cancer cells.

Authors:  Cynthia C T Sprenger; Rolf H Drivdahl; Lillie B Woodke; Daniel Eyman; May J Reed; William G Carter; Stephen R Plymate
Journal:  Neoplasia       Date:  2008-12       Impact factor: 5.715

7.  Features of senescence and cell death induced by doxorubicin in A549 cells: organization and level of selected cytoskeletal proteins.

Authors:  Anna Litwiniec; Alina Grzanka; Anna Helmin-Basa; Lidia Gackowska; Dariusz Grzanka
Journal:  J Cancer Res Clin Oncol       Date:  2009-11-07       Impact factor: 4.553

Review 8.  The senescence-associated secretory phenotype: the dark side of tumor suppression.

Authors:  Jean-Philippe Coppé; Pierre-Yves Desprez; Ana Krtolica; Judith Campisi
Journal:  Annu Rev Pathol       Date:  2010       Impact factor: 23.472

Review 9.  Critical pathways in cellular senescence and immortalization revealed by gene expression profiling.

Authors:  A L Fridman; M A Tainsky
Journal:  Oncogene       Date:  2008-08-18       Impact factor: 9.867

10.  Interferon-inducible IFI16, a negative regulator of cell growth, down-regulates expression of human telomerase reverse transcriptase (hTERT) gene.

Authors:  Lynda Li Song; Larissa Ponomareva; Hui Shen; Xin Duan; Fatouma Alimirah; Divaker Choubey
Journal:  PLoS One       Date:  2010-01-05       Impact factor: 3.240

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