Publication:
Sumoylation of Smc5 Promotes Error-free Bypass at Damaged Replication Forks.

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2019

Authors

Zapatka, Mariel
Pociño-Merino, Irene
Heluani-Gahete, Hayat
Bermúdez-López, Marcelino
Tarrés, Marc
Ibars, Eva
Solé-Soler, Roger
Gutiérrez-Escribano, Pilar
Apostolova, Sonia
Casas, Celia

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Abstract

Replication of a damaged DNA template can threaten the integrity of the genome, requiring the use of various mechanisms to tolerate DNA lesions. The Smc5/6 complex, together with the Nse2/Mms21 SUMO ligase, plays essential roles in genome stability through undefined tasks at damaged replication forks. Various subunits within the Smc5/6 complex are substrates of Nse2, but we currently do not know the role of these modifications. Here we show that sumoylation of Smc5 is targeted to its coiled-coil domain, is upregulated by replication fork damage, and participates in bypass of DNA lesions. smc5-KR mutant cells display defects in formation of sister chromatid junctions and higher translesion synthesis. Also, we provide evidence indicating that Smc5 sumoylation modulates Mph1-dependent fork regression, acting synergistically with other pathways to promote chromosome disjunction. We propose that sumoylation of Smc5 enhances physical remodeling of damaged forks, avoiding the use of a more mutagenic tolerance pathway.

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Cell Cycle Proteins
Chromatids
Chromosomes
DNA
DNA Damage
DNA Repair
DNA Replication
Saccharomyces cerevisiae
Saccharomyces cerevisiae Proteins
Sumoylation

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Keywords

DNA damage tolerance, DNA replication, Mms21, Mph1, Nse2, SUMO, Smc5, chromosome, fork regression, yeast

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