H4K20me0 marks post-replicative chromatin and recruits the TONSL–MMS22L DNA repair complex.
about
A game of musical chairs: Pro- and anti-resection factors compete for TOPBP1 binding after DNA damage.DNA-mediated association of two histone-bound complexes of yeast Chromatin Assembly Factor-1 (CAF-1) drives tetrasome assembly in the wake of DNA replicationThe MMS22L-TONSL heterodimer directly promotes RAD51-dependent recombination upon replication stress.Histone chaperone networks shaping chromatin function.Regulation of Replication Fork Advance and Stability by Nucleosome Assembly.Cross-Regulation between Transposable Elements and Host DNA Replication.Structural insights into the coordination of plastid division by the ARC6-PDV2 complex.The control of DNA repair by the cell cycle.Histone H4K20 tri-methylation at late-firing origins ensures timely heterochromatin replication.MRG15-mediated tethering of PALB2 to unperturbed chromatin protects active genes from genotoxic stress.Assessment of hard target modeling in CASP12 reveals an emerging role of alignment-based contact prediction methods.H4K20me2 distinguishes pre-replicative from post-replicative chromatin to appropriately direct DNA repair pathway choice by 53BP1-RIF1-MAD2L2.Building up and breaking down: mechanisms controlling recombination during replication.Replication Stress Shapes a Protective Chromatin Environment across Fragile Genomic Regions.DNA replication through a chromatin environment.Reading chromatin signatures after DNA double-strand breaks.MGO3 and GIP1 act synergistically for the maintenance of centromeric cohesion.Exploring the origin of the catalytic power and product specificity of SET domain protein methyltransferase.The Histone Chaperones ASF1 and CAF-1 Promote MMS22L-TONSL-Mediated Rad51 Loading onto ssDNA during Homologous Recombination in Human Cells.Replication-Coupled Nucleosome Assembly in the Passage of Epigenetic Information and Cell Identity.Replication-Coupled Dilution of H4K20me2 Guides 53BP1 to Pre-replicative Chromatin.Chromatin and nucleosome dynamics in DNA damage and repair.Shepherding DNA ends: Rif1 protects telomeres and chromosome breaks.Evidence for the nuclear import of histones H3.1 and H4 as monomersTousled-like kinases stabilize replication forks and show synthetic lethality with checkpoint and PARP inhibitors
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H4K20me0 marks post-replicative chromatin and recruits the TONSL–MMS22L DNA repair complex.
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article científic
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article scientifique
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articolo scientifico
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artigo científico
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bilimsel makale
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scientific article published on 22 June 2016
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vedecký článok
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vetenskaplig artikel
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videnskabelig artikel
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vědecký článek
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H4K20me0 marks post-replicativ ...... NSL–MMS22L DNA repair complex.
@en
H4K20me0 marks post-replicativ ...... NSL–MMS22L DNA repair complex.
@nl
type
label
H4K20me0 marks post-replicativ ...... NSL–MMS22L DNA repair complex.
@en
H4K20me0 marks post-replicativ ...... NSL–MMS22L DNA repair complex.
@nl
prefLabel
H4K20me0 marks post-replicativ ...... NSL–MMS22L DNA repair complex.
@en
H4K20me0 marks post-replicativ ...... NSL–MMS22L DNA repair complex.
@nl
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H4K20me0 marks post-replicativ ...... NSL–MMS22L DNA repair complex.
@en
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Constance Alabert
Dinshaw J Patel
Hongda Huang
Ignasi Forne
Lucie Mlejnkova
Nazaret Reverón-Gómez
Niels Mailand
Petr Cejka
Simon Bekker-Jensen
Till Bartke
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10.1038/NATURE18312
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P577
2016-06-22T00:00:00Z
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1040389067