about
Use of quantitative mass spectrometric analysis to elucidate the mechanisms of phospho-priming and auto-activation of the checkpoint kinase Rad53 in vivo.Slx4 and Rtt107 control checkpoint signalling and DNA resection at double-strand breaks.DNA damage checkpoints and DNA replication controls in Saccharomyces cerevisiae.The DNA replication checkpoint response stabilizes stalled replication forksRegulation of Saccharomyces Rad53 checkpoint kinase during adaptation from DNA damage-induced G2/M arrest.The Saccharomyces recombination protein Tid1p is required for adaptation from G2/M arrest induced by a double-strand break.Yeast Rad52 and Rad51 recombination proteins define a second pathway of DNA damage assessment in response to a single double-strand break.Elevated levels of the polo kinase Cdc5 override the Mec1/ATR checkpoint in budding yeast by acting at different steps of the signaling pathway.Functional interplay between the 53BP1-ortholog Rad9 and the Mre11 complex regulates resection, end-tethering and repair of a double-strand break.Signal transduction: how rad53 kinase is activated.Molecular basis of the essential s phase function of the rad53 checkpoint kinase.Checkpoint mechanisms at the intersection between DNA damage and repair.Slx4 scaffolding in homologous recombination and checkpoint control: lessons from yeast.Reduced kinase activity of polo kinase Cdc5 affects chromosome stability and DNA damage response in S. cerevisiae.Tid1/Rdh54 translocase is phosphorylated through a Mec1- and Rad53-dependent manner in the presence of DSB lesions in budding yeast.The RSC chromatin-remodeling complex influences mitotic exit and adaptation to the spindle assembly checkpoint by controlling the Cdc14 phosphatase.A role for DNA primase in coupling DNA replication to DNA damage response.To trim or not to trim: progression and control of DSB end resectionTOPBP1Dpb11 plays a conserved role in homologous recombination DNA repair through the coordinated recruitment of 53BP1Rad9.Activation of Rad53 kinase in response to DNA damage and its effect in modulating phosphorylation of the lagging strand DNA polymerase.Recovery from checkpoint-mediated arrest after repair of a double-strand break requires Srs2 helicase.A blooming resolvase at chromosomal fragile sites.Recombination at collapsed replication forks: the payoff for survival.Checkpoint-mediated control of replisome–fork association and signalling in response to replication pausingOne, No One, and One Hundred Thousand: The Many Forms of Ribonucleotides in DNARegulation of DNA Double Strand Breaks Processing: Focus on Barriers
P50
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P50
description
onderzoeker
@nl
researcher ORCID ID = 0000-0002-1528-9009
@en
name
Achille Pellicioli
@ast
Achille Pellicioli
@en
Achille Pellicioli
@es
Achille Pellicioli
@nl
type
label
Achille Pellicioli
@ast
Achille Pellicioli
@en
Achille Pellicioli
@es
Achille Pellicioli
@nl
prefLabel
Achille Pellicioli
@ast
Achille Pellicioli
@en
Achille Pellicioli
@es
Achille Pellicioli
@nl
P106
P1153
6602404922
P31
P496
0000-0002-1528-9009