Literature DB >> 12907719

Cell cycle arrest and apoptosis provoked by UV radiation-induced DNA damage are transcriptionally highly divergent responses.

Massimiliano Gentile1, Leena Latonen, Marikki Laiho.   

Abstract

DNA damage caused by UV radiation initiates cellular recovery mechanisms, which involve activation of DNA damage response pathways, cell cycle arrest and apoptosis. To assess cellular transcriptional responses to UVC-induced DNA damage we compared time course responses of human skin fibroblasts to low and high doses of UVC radiation known to induce a transient cellular replicative arrest or apoptosis, respectively. UVC radiation elicited >3-fold changes in 460 out of 12,000 transcripts and 89% of these represented downregulated transcripts. Only 5% of the regulated genes were common to both low and high doses of radiation. Cells inflicted with a low dose of UVC exhibited transcription profiles demonstrating transient regulation followed by recovery, whereas the responses were persistent after the high dose. A detailed clustering analysis and functional classification of the targets implied regulation of biologically divergent responses and suggested involvement of transcriptional and translational machinery, inflammatory, anti-proliferative and anti-angiogenic responses. The data support the notion that UVC radiation induces prominent, dose-dependent downregulation of transcription. However, the data strongly suggest that transcriptional repression is also target gene selective. Furthermore, the results demonstrate that dose-dependent induction of cell cycle arrest and apoptosis by UVC radiation are transcriptionally highly distinct responses.

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Year:  2003        PMID: 12907719      PMCID: PMC169943          DOI: 10.1093/nar/gkg675

Source DB:  PubMed          Journal:  Nucleic Acids Res        ISSN: 0305-1048            Impact factor:   16.971


  47 in total

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2.  Opposing effects of Ets and Id proteins on p16INK4a expression during cellular senescence.

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Review 3.  The DNA damage response: putting checkpoints in perspective.

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Review 4.  Molecular mechanisms of UV-induced apoptosis.

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5.  Distribution and repair of bipyrimidine photoproducts in solar UV-irradiated mammalian cells. Possible role of Dewar photoproducts in solar mutagenesis.

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6.  Expression of the p48 xeroderma pigmentosum gene is p53-dependent and is involved in global genomic repair.

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7.  Interleukin 11 reduces apoptosis in UVB-irradiated mouse skin.

Authors:  I A Scordi; M Nassiri; A J Hanly; V Vincek
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Review 8.  Heparin-binding EGF-like growth factor: a juxtacrine growth factor.

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Review 10.  Involvement of polyamines in apoptosis. Facts and controversies: effectors or protectors?

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  49 in total

1.  Regulation of ultraviolet light-induced gene expression by gene size.

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Review 2.  Role of Bcl-2 family proteins and caspases in the regulation of apoptosis.

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4.  Ultraviolet radiation stress triggers the down-regulation of essential replication factor Mcm10.

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Review 5.  Safeguarding entry into mitosis: the antephase checkpoint.

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6.  Negative regulation of the FOXO3a transcription factor by mTORC2 induces a pro-survival response following exposure to ultraviolet-B irradiation.

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7.  Identification of DNA-dependent protein kinase catalytic subunit as a novel interaction partner of lymphocyte enhancer factor 1.

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8.  In vivo identification of solar radiation-responsive gene network: role of the p38 stress-dependent kinase.

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Journal:  PLoS One       Date:  2010-05-21       Impact factor: 3.240

9.  Caffeine prevents transcription inhibition and P-TEFb/7SK dissociation following UV-induced DNA damage.

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10.  Screen for DNA-damage-responsive histone modifications identifies H3K9Ac and H3K56Ac in human cells.

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