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PMID: 15931174 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

SUMO-modified PCNA recruits Srs2 to prevent recombination during S phase.

Nature ·Vol. 436 ·No. 7049 ·2005-07-21 ·Pages 428-33

Pfander B, Moldovan GL, Sacher M, Hoege C, Jentsch S

Abstract

Damaged DNA, if not repaired before replication, can lead to replication fork stalling and genomic instability; however, cells can switch to different damage bypass modes that permit replication across lesions. Two main bypasses are controlled by ubiquitin modification of proliferating cell nuclear antigen (PCNA), a homotrimeric DNA-encircling protein that functions as a polymerase processivity factor and regulator of replication-linked functions. Upon DNA damage, PCNA is modified at the conserved lysine residue 164 by either mono-ubiquitin or a lysine-63-linked multi-ubiquitin chain, which induce error-prone or error-free replication bypasses of the lesions. In S phase, even in the absence of exogenous DNA damage, yeast PCNA can be alternatively modified by the small ubiquitin-related modifier protein SUMO; however the consequences of this remain controversial. Here we show by genetic analysis that SUMO-modified PCNA functionally cooperates with Srs2, a helicase that blocks recombinational repair by disrupting Rad51 nucleoprotein filaments. Moreover, Srs2 displays a preference for interacting directly with the SUMO-modified form of PCNA, owing to a specific binding site in its carboxy-terminal tail. Our finding suggests a model in which SUMO-modified PCNA recruits Srs2 in S phase in order to prevent unwanted recombination events of replicating chromosomes.

MeSH Terms
Chromosomes, Fungal/genetics,metabolism DNA Damage DNA Helicases/chemistry,metabolism DNA Replication Epistasis, Genetic Mutagenesis/genetics Mutation/genetics Phenotype Proliferating Cell Nuclear Antigen/chemistry,genetics,metabolism Protein Binding Recombination, Genetic/genetics S Phase SUMO-1 Protein/metabolism Saccharomyces cerevisiae/cytology,genetics,metabolism Saccharomyces cerevisiae Proteins/chemistry,genetics,metabolism Sequence Homology, Nucleic Acid Substrate Specificity Ubiquitin-Conjugating Enzymes/genetics,metabolism
Chemicals
Proliferating Cell Nuclear Antigen SUMO-1 Protein Saccharomyces cerevisiae Proteins SRS2 protein, S cerevisiae RAD6 protein, S cerevisiae Ubiquitin-Conjugating Enzymes DNA Helicases
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Pfander Boris
Department of Molecular Cell Biology, Max Planck Institute of Biochemistry, Am Klopferspitz 18, 82152 Martinsried, Germany.
Moldovan George-Lucian
Sacher Meik
Hoege Carsten
Jentsch Stefan
Article Info
Journal
Nature
Abbr.
Nature
ISSN
1476-4687
Published
2005-07-21
Epub
2005-00-01
Pages
428-33
Language
English
Region
England
NLM ID
0410462
Subset
IM
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