TATA Binding Protein Discriminates between Different Lesions on DNA, Resulting in a Transcription Decrease

Archive ouverte

Coin, Frédéric | Frit, Philippe | Viollet, Benoit | Salles, Bernard | Egly, Jean-Marc

Edité par CCSD ; American Society for Microbiology -

International audience. ABSTRACT DNA damage recognition by basal transcription factors follows different mechanisms. Using transcription-competition, nitrocellulose filter binding, and DNase I footprinting assays, we show that, although the general transcription factor TFIIH is able to target any kind of lesion which can be repaired by the nucleotide excision repair pathway, TATA binding protein (TBP)-TFIID is more selective in damage recognition. Only genotoxic agents which are able to induce kinked DNA structures similar to the one for the TATA box in its TBP complex are recognized. Indeed, DNase I footprinting patterns reveal that TBP protects equally 4 nucleotides upstream and 6 nucleotides downstream from the A-T (at position −29 of the noncoding strand) of the adenovirus major late promoter and from the G-G of a cisplatin-induced 1,2-d(GpG) cross-link. Together, our results may partially explain differences in transcription inhibition rates following DNA damage.

Consulter en ligne

Suggestions

Du même auteur

Transcriptional Activators Stimulate DNA Repair

Archive ouverte | Frit, Philippe | CCSD

International audience. To counteract the deleterious effects of genotoxic injury, cells have set up a sophisticated network of DNA repair pathways. We show that Gal4-VP16 and RAR transcriptional activators stimulat...

The Membrane-associated Form of the DNA Repair Protein Ku is Involved in Cell Adhesion to Fibronectin

Archive ouverte | Monferran, Sylvie | CCSD

International audience. The Ku heterodimer (Ku70/Ku80) plays a central role in DNA double-strand breaks recognition and repair. However, Ku is expressed also on the surface of different types of cells along with its...

Ku counteracts mobilization of PARP1 and MRN inchromatin damaged with DNA double-strand breaks

Archive ouverte | Cheng, Qiao | CCSD

International audience. In mammalian cells, the main pathway for DNAdouble-strand breaks (DSBs) repair is classicalnon-homologous end joining (C-NHEJ). An alternativeor back-up NHEJ (B-NHEJ) pathway hasemerged which...

Chargement des enrichissements...