Literature DB >> 12452770

Delayed cell cycle progression in human lymphoblastoid cells after exposure to high-LET radiation correlates with extremely localized DNA damage.

Sachiko Goto1, Masami Watanabe, Fumio Yatagai.   

Abstract

To compare the genotoxic effects of high-LET ionizing radiation to those of low-LET radiation, we investigated the responses of human lymphoblastoid cells to DNA damage TK6 after treatment with either low-LET X rays or high-LET iron ions (1000 keV/microm). A highly localized distribution of gammaH2AX/RAD51 foci was observed in the nuclei of cells irradiated with iron ions, in sharp contrast to cells exposed to X rays, where the distribution of foci was much more uniform. This implied the occurrence of a relatively high frequency of closely spaced double-strand breaks, i.e. clustered DNA damage, after iron-ion exposure. Despite the well-established notion that clustered DNA damage is refractory to repair compared to isolated DNA lesions, there were no significant differences in the levels of clonogenic survival and apoptosis between cells treated with iron ions or X rays. Strikingly, however, cells accumulated in G(2)/M phase to a much lesser extent after iron-ion exposure than after X-ray exposure. This differential accumulation could be attributed to a much slower evacuation of the S-phase compartment in the case of cells irradiated with iron ions. Taken together, our results indicate that, relative to the situation for low-LET X rays, exposure to high-LET iron ions results in a substantially greater inhibition of S-phase progression as a result of a higher frequency of DNA replication-blocking clustered DNA damage.

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Year:  2002        PMID: 12452770     DOI: 10.1667/0033-7587(2002)158[0678:dccpih]2.0.co;2

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


  8 in total

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3.  Differential activation of mitogen-activated protein kinases following high and low LET radiation in murine macrophage cell line.

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4.  The radiation protection and therapy effects of mesenchymal stem cells in mice with acute radiation injury.

Authors:  K X Hu; Q Y Sun; M Guo; H S Ai
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5.  Intestinal bacterial indicator phylotypes associate with impaired DNA double-stranded break sensors but augmented skeletal bone micro-structure.

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Review 6.  Radiation-Induced Cardiovascular Disease: Mechanisms and Importance of Linear Energy Transfer.

Authors:  Christopher B Sylvester; Jun-Ichi Abe; Zarana S Patel; K Jane Grande-Allen
Journal:  Front Cardiovasc Med       Date:  2018-01-31

7.  Towards predicting the response of a solid tumour to chemotherapy and radiotherapy treatments: clinical insights from a computational model.

Authors:  Gibin G Powathil; Douglas J A Adamson; Mark A J Chaplain
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8.  Base excision repair of ionizing radiation-induced DNA damage in G1 and G2 cell cycle phases.

Authors:  M Ahmad Chaudhry
Journal:  Cancer Cell Int       Date:  2007-09-24       Impact factor: 5.722

  8 in total

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