Literature DB >> 15161352

Accumulation of the cell cycle regulators TP53 and CDKN1A (p21) in human fibroblasts after exposure to low- and high-LET radiation.

C Fournier1, C Wiese, G Taucher-Scholz.   

Abstract

The accumulation of the cell cycle regulators TP53 and CDKN1A (p21/CIP1/WAF1) was investigated after exposure to X rays and carbon ions (170 keV microm(-1)) and xenon, bismuth and uranium ions (8900-15,000 keV microm(-1)) in normal human fibroblasts. The influence of the overall dose and the LET of these radiation types was studied systematically and the kinetics of the cell response was followed up to 24 h after exposure. The accumulation of TP53 protein was dependent on the dose and the LET, and TP53 levels declined to lower levels for all radiation types within 24 h after exposure. CDKN1A levels increased and peaked at 3 to 6 h after exposure. The persisting level of this protein at 24 h was strongly dependent on the dose and the LET for X rays and carbon ions. The exposure to very high-LET ions (8900-15,000 keV microm(-1)) did not lead to a further increase in CDKN1A, suggesting a saturation effect for the induction of this protein. The cellular effects of elevated CDKN1A after particle irradiation are discussed.

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Year:  2004        PMID: 15161352     DOI: 10.1667/rr3182

Source DB:  PubMed          Journal:  Radiat Res        ISSN: 0033-7587            Impact factor:   2.841


  11 in total

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2.  Computational modeling of signaling pathways mediating cell cycle checkpoint control and apoptotic responses to ionizing radiation-induced DNA damage.

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4.  ATM alters the otherwise robust chromatin mobility at sites of DNA double-strand breaks (DSBs) in human cells.

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5.  Feasibility Study on Cardiac Arrhythmia Ablation Using High-Energy Heavy Ion Beams.

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8.  Increased effectiveness of carbon ions in the production of reactive oxygen species in normal human fibroblasts.

Authors:  Till Dettmering; Sebastian Zahnreich; Miriam Colindres-Rojas; Marco Durante; Gisela Taucher-Scholz; Claudia Fournier
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9.  Exposure to Carbon Ions Triggers Proinflammatory Signals and Changes in Homeostasis and Epidermal Tissue Organization to a Similar Extent as Photons.

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Review 10.  Basics of Radiation Biology When Treating Hyperproliferative Benign Diseases.

Authors:  Franz Rödel; Claudia Fournier; Julia Wiedemann; Felicitas Merz; Udo S Gaipl; Benjamin Frey; Ludwig Keilholz; M Heinrich Seegenschmiedt; Claus Rödel; Stephanie Hehlgans
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