| Literature DB >> 19735555 |
Florian Bonin1, Manuella Molina, Claude Malet, Chantal Ginestet, Odile Berthier-Vergnes, Michèle T Martin, Jérôme Lamartine.
Abstract
BACKGROUND: The general population is constantly exposed to low levels of radiation through natural, occupational or medical irradiation. Even if the biological effects of low-level radiation have been intensely debated and investigated, the molecular mechanisms underlying the cellular response to low doses remain largely unknown.Entities:
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Year: 2009 PMID: 19735555 PMCID: PMC2753551 DOI: 10.1186/1471-2164-10-417
Source DB: PubMed Journal: BMC Genomics ISSN: 1471-2164 Impact factor: 3.969
Figure 1GATA proteins bind to promoter of IR-responding genes after 1 cGy irradiation. ChIP of primary keratinocytes with anti-GATA1 (IP GATA1) anti-GATA3 (IP GATA3) or mouse Ig (IP ctrl) after mock (0 Gy) or 1 cGy irradiation. The promoter regions of GRCA, NRCAM, PPIL2 and MGC11349 were PCR-amplified on immunoprecipitated chromatin or total input DNA and resolved on 1.5% agarose gel. M: molecular weight ladder 100 bp.
Figure 2Silencing GATA3 expression in human keratinocytes transduced with the various GATA3 shRNA vectors. (A) Quantitative RT-PCR analysis of GATA3 transcripts at various time points after infection of human keratinocytes with the various shRNA vectors. The repression fold of the GATA3 transcript versus cells infected with the shSCR vector is indicated. (B) Analysis of GATA3 and beta-actin (ACT) protein levels by immunoblotting in human keratinocytes infected either with the sh299 (shGATA3) or the shSCR vector at 48 or 72 hours after infection.
Figure 3Radiosensitivity of shGATA3 keratinocytes. (A) Short-term radiosensitivity: Transduced keratinocytes were exposed to 1 cGy or 2 Gy radiation, and viability was measured after 72 h by the XTT method. Results are expressed as the mean percentage +/- SD of viable cells of 3 independent experiments, assuming 100% viability for non-irradiated cells. *p < 0.05. (B) Long-term radiosensitivity: Transduced cells were plated at low density (20 cells/cm2). The next day, they were irradiated at 1 cGy or 2 Gy and then cultured for 2 weeks. The number of colonies obtained is expressed as the mean percentage +/- SD of 3 independent experiments. *p < 0.01.
Figure 4Experimental strategy of the transcriptome analysis.
Figure 5Gene modulation at individual time points in shGATA3 and shSCR transduced cells.
Figure 6Comparison of microarray and real-time PCR experiments. For 4 genes modulated in shGATA3 cells, microarray ratios were compared to real-time PCR ratios. The given ratios are the expression levels of irradiated compared to non-irradiated cells. RT-PCR ratios are the means of 3 independent amplifications. Errors bars correspond to standard deviations.
Functional annotation of shGATA3-regulated genes at 48 h
| Chaperone | 2.3 E-5 | 9 out 174 | CMT2L, CANX, HSPA9B, HYOUN1, PTGES3, TIMM9, PFDN2, TRAP1, TXNDC4 | |
| TGFb signaling | 2.1 E-5 | 7 out 174 | TGIF1, TSC22D1, TGFBR1, INHBE, SMAD4, ID1, E2F5 | |
| Phosphatase activity | 5.3 E-4 | 3 out 174 | UBLCP1, DUSP1, PTPN12 | |
| Response to stress | 5.3 E-4 | 14 out 174 | DUSP1, EGR1, CMT2L, HSPA9B, HYOUN1, DDIT3, PRNP, SFPQ, NFATC3, SYVN1, TRAP1, ACVRL1, NCR3, HBEGF | |
| RNA metabolic process | 8.7 E-3 | 18 out 174 | DDIT3, PPP2R1B, ELL2, EGR1, NFATC3, SFPQ, E2F5, ID1, NFT3, TSC22D1, ZNF146, SF3B14, WDSOF1, ZNF238, ZFP3, CGGBP1, SMAD4, HMGN2 | |
| Cytoplasm | 2.2 E-3 | 39 out 92 | * |
The overrepresented Gene Ontology categories determined by EASE are indicated. * Due to the high number of annotated genes in the 48 h shGATA3 repressed line, the 39 genes are not listed.
Promoter analysis of the IR-responding genes in shGATA3 cells at 48 h.
| 0.31 +/- 0.02 | 0.72 +/- 0.08 | 0.28 +/- 0.03 |
Mean number of putative GATA3 binding sites in the promoter sequences (-750, +250) of the 30 most induced and 30 most repressed genes in shGATA3 cells. The mean number of putative GATA3 binding sites is indicated. As a control, a random sample of 50 non-responding genes was also analyzed.