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1.
Chromosoma ; 120(3): 309-19, 2011 Jun.
Artigo em Inglês | MEDLINE | ID: mdl-21359527

RESUMO

Interstitial telomeric sequences (ITSs) in hamster cells are hot spots for spontaneous and induced chromosome aberrations (CAs). Most data on ITS instability to date have been obtained in DNA repair-proficient cells. The classical non-homologous end joining repair pathway (C-NHEJ), which is the principal double strand break (DSB) repair mechanism in mammalian cells, is thought to restore the morphologically correct chromosome structure. The production of CAs thus involves DNA-PKcs-independent repair pathways. In our current study, we investigated the participation of DNA-PKcs from the C-NHEJ pathway in the repair of spontaneous or radiation-induced DSBs in ITSs using wild-type and DNA-PKcs mutant Chinese hamster ovary cells. Our data demonstrate that DNA-PKcs stabilizes spontaneous DSBs within ITSs from the chromosome 9 long arm, leading to the formation of terminal deletions. In addition, we show that DNA-PKcs-dependent C-NHEJ is employed following radiation-induced DSBs in other ITSs and restores morphologically correct chromosomes, whereas DNA-PKcs independent mechanisms co-exist in DNA-PKcs proficient cells leading to an excess of CAs within ITSs.


Assuntos
Aberrações Cromossômicas , Quebras de DNA de Cadeia Dupla , Reparo do DNA/genética , Proteína Quinase Ativada por DNA/metabolismo , Telômero/genética , Animais , Células CHO , Cricetinae , Cricetulus
2.
Nucleic Acids Res ; 38(9): 2955-63, 2010 May.
Artigo em Inglês | MEDLINE | ID: mdl-20147462

RESUMO

Telomere maintenance is essential to preserve genomic stability and involves several telomere-specific proteins as well as DNA replication and repair proteins. The kinase ATR, which has a crucial function in maintaining genome integrity from yeast to human, has been shown to be involved in telomere maintenance in several eukaryotic organisms, including yeast, Arabidopsis and Drosophila. However, its role in telomere maintenance in mammals remains poorly explored. Here, we report by using telomere-fluorescence in situ hybridization (Telo-FISH) on metaphase chromosomes that ATR deficiency causes telomere instability both in primary human fibroblasts from Seckel syndrome patients and in HeLa cells. The telomere aberrations resulting from ATR deficiency (i.e. sister telomere fusions and chromatid-type telomere aberrations) are mainly generated during and/or after telomere replication, and involve both leading and lagging strand telomeres as shown by chromosome orientation-FISH (CO-FISH). Moreover, we show that ATR deficiency strongly sensitizes cells to the G-quadruplex ligand 360A, enhancing sister telomere fusions and chromatid-type telomere aberrations involving specifically the lagging strand telomeres. Altogether, these data reveal that ATR plays a critical role in telomere maintenance during and/or after telomere replication in human cells.


Assuntos
Proteínas de Ciclo Celular/fisiologia , Proteínas Serina-Treonina Quinases/fisiologia , Telômero/química , Adolescente , Adulto , Proteínas Mutadas de Ataxia Telangiectasia , Proteínas de Ciclo Celular/antagonistas & inibidores , Proteínas de Ciclo Celular/genética , Células Cultivadas , Criança , Pré-Escolar , Aberrações Cromossômicas , Feminino , Fibroblastos/química , Técnicas de Silenciamento de Genes , Células HeLa , Humanos , Masculino , Pessoa de Meia-Idade , Proteínas Serina-Treonina Quinases/antagonistas & inibidores , Proteínas Serina-Treonina Quinases/genética , Piridinas/farmacologia , Quinolinas/farmacologia , Telômero/efeitos dos fármacos
3.
Cell Cycle ; 8(7): 1099-100, 2009 Apr 01.
Artigo em Inglês | MEDLINE | ID: mdl-19270515

RESUMO

Interstitial (also called internal or intrachromosomal) telomeric sequences (ITS) are found in many organisms.(1) In hamsters, CHO cells show long (up to several Mbp) ITS(2) (Fig. 1A) which are over involved in spontaneous or radiation induced chromosome aberrations.(3) ITS are also found in human, but they are much shorter (several hundreds of bp maximum) and show no radiosensitivity.(4) We report here the striking observation that interstitial telomeric chromatin, although located near centromeres in hamster cells, shares common structural features with truly telomeric chromatin (located at the end of chromosomes), and notably a higher nucleosome density than bulk chromatin, which correlates with a highly regular chromatin structure. This study emphasizes the critical role of DNA in establishing particular chromatin folding, confirming that the DNA sequence encodes important information concerning local chromatin properties.


Assuntos
Cromatina/ultraestrutura , DNA/química , Conformação de Ácido Nucleico , Telômero/ultraestrutura , Animais , Sequência de Bases , Células CHO , Cromatina/química , Cricetinae , Cricetulus , Telômero/química
4.
Biochimie ; 90(1): 60-72, 2008 Jan.
Artigo em Inglês | MEDLINE | ID: mdl-18006207

RESUMO

Telomeres are the very ends of the chromosomes. They can be seen as natural double-strand breaks (DSB), specialized structures which prevent DSB repair and activation of DNA damage checkpoints. In somatic cells, attrition of telomeres occurs after each cell division until replicative senescence. In the absence of telomerase, telomeres shorten due to incomplete replication of the lagging strand at the very end of chromosome termini. Moreover, oxidative stress and accumulating reactive oxygen species (ROS) lead to an increased telomere shortening due to a less efficient repair of SSB in telomeres. The specialized structures at telomeres include proteins involved in both telomere maintenance and DNA repair. However when a telomere is damaged and has to be repaired, those proteins might fail to perform an accurate repair of the damage. This is the starting point of this article in which we first summarize the well-established relationships between DNA repair processes and maintenance of functional telomeres. We then examine how damaged telomeres would be processed, and show that irradiation alters telomere maintenance leading to possibly dramatic consequences. Our point is to suggest that those consequences are not restricted to the short term effects such as increased radiation-induced cell death. On the contrary, we postulate that the major impact of the loss of telomere integrity might occur in the long term, during multistep carcinogenesis. Its major role would be to act as an amplificator event unmasking in one single step recessive radiation-induced mutations among thousands of genes and providing cellular proliferative advantage. Moreover, the chromosomal instability generated by damaged telomeres will favour each step of the transformation from normal to fully transformed cells.


Assuntos
Dano ao DNA , Reparo do DNA , Telomerase/metabolismo , Proteínas de Ligação a Telômeros/metabolismo , Telômero/fisiologia , Telômero/efeitos da radiação , Animais , Transformação Celular Neoplásica , Humanos , Estresse Oxidativo , Tolerância a Radiação , Recombinação Genética , Telômero/enzimologia
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