In this work we report that budding yeasts carrying human-type telomeric repeats at their chromosome termini show a chronic activation of the Rad53-dependent DNA damage checkpoint pathway and a G2/M cell cycle delay. Furthermore, in the absence of either TEL1/ATM or MEC1/ATR genes, which encodes phosphatidylinositol 3-kinase-related kinases (PIKKs), we detected telomere fusions, whose appearance correlates with a reduced cell viability and a high rate of genome instability. Based on sequence analysis, telomere fusions occurred primarily between ultrashort telomeres. Microcolony formation assays argue against the possibility that fusion-containing cells are eliminated by PIKK-dependent signalling.

The Mec1p and Tel1p checkpoint kinases allow humanized yeast to tolerate chronic telomere dysfunctions by suppressing telomere fusions / DI DOMENICO, Enea Gino; Auriche, Cristina; Viscardi, V; Longhese, Mp; Gilson, E; Ascenzioni, Fiorentina. - In: DNA REPAIR. - ISSN 1568-7864. - 8:2(2008), pp. 209-218. [10.1016/j.dnarep.2008.10.005]

The Mec1p and Tel1p checkpoint kinases allow humanized yeast to tolerate chronic telomere dysfunctions by suppressing telomere fusions.

DI DOMENICO, Enea Gino;AURICHE, Cristina;ASCENZIONI, Fiorentina
2008

Abstract

In this work we report that budding yeasts carrying human-type telomeric repeats at their chromosome termini show a chronic activation of the Rad53-dependent DNA damage checkpoint pathway and a G2/M cell cycle delay. Furthermore, in the absence of either TEL1/ATM or MEC1/ATR genes, which encodes phosphatidylinositol 3-kinase-related kinases (PIKKs), we detected telomere fusions, whose appearance correlates with a reduced cell viability and a high rate of genome instability. Based on sequence analysis, telomere fusions occurred primarily between ultrashort telomeres. Microcolony formation assays argue against the possibility that fusion-containing cells are eliminated by PIKK-dependent signalling.
2008
Yeast, Telomere, Telomere fusion, Checkpoints, TEL1, MEC1
01 Pubblicazione su rivista::01a Articolo in rivista
The Mec1p and Tel1p checkpoint kinases allow humanized yeast to tolerate chronic telomere dysfunctions by suppressing telomere fusions / DI DOMENICO, Enea Gino; Auriche, Cristina; Viscardi, V; Longhese, Mp; Gilson, E; Ascenzioni, Fiorentina. - In: DNA REPAIR. - ISSN 1568-7864. - 8:2(2008), pp. 209-218. [10.1016/j.dnarep.2008.10.005]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/48967
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