Abstract

The SUMO ligase activity of Mms21/Nse2, a conserved member of the Smc5/6 complex, is required for resisting extrinsically induced genotoxic stress. We report that the Mms21 SUMO ligase activity is also required during the unchallenged mitotic cell cycle in Saccharomyces cerevisiae. SUMO ligase-defective cells were slow growing and spontaneously incurred DNA damage. These cells required caffeine-sensitive Mec1 kinase-dependent checkpoint signaling for survival even in the absence of extrinsically induced genotoxic stress. SUMO ligase-defective cells were sensitive to replication stress and displayed synthetic growth defects with DNA damage checkpoint-defective mutants such as mec1, rad9, and rad24. MMS21 SUMO ligase and mediator of replication checkpoint 1 gene (MRC1) were epistatic with respect to hydroxyurea-induced replication stress or methyl methanesulfonate-induced DNA damage sensitivity. Subjecting Mms21 SUMO ligase-deficient cells to transient replication stress resulted in enhancement of cell cycle progression defects such as mitotic delay and accumulation of hyperploid cells. Consistent with the spontaneous activation of the DNA damage checkpoint pathway observed in the Mms21-mediated sumoylation-deficient cells, enhanced frequency of chromosome breakage and loss was detected in these mutant cells. A mutation in the conserved cysteine 221 that is engaged in coordination of the zinc ion in Loop 2 of the Mms21 SPL-RING E3 ligase catalytic domain resulted in strong replication stress sensitivity and also conferred slow growth and Mec1 dependence to unchallenged mitotically dividing cells. Our findings establish Mms21-mediated sumoylation as a determinant of cell cycle progression and maintenance of chromosome integrity during the unperturbed mitotic cell division cycle in budding yeast.

Highlights

  • DNA damage help prevent the acquisition of genetic changes [1]

  • We investigated the role of the small ubiquitin-related modifier (SUMO) ligase activity of Mms21 during the unchallenged mitotic cell division cycle in S. cerevisiae and found evidence for its requirement in the absence of extrinsically induced genotoxic stress for maintenance of normal growth and chromosome integrity and prevention of DNA damage

  • To study the function of the SUMO ligase activity of Mms21, we created a mutant mms21⌬sl, which results in truncation of the Mms21 protein prior to the E3 ligase domain, by insertion of the KanMX6 selectable marker prior to the start of the E3 ligase coding sequence

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Summary

The abbreviations used are

Structural maintenance of chromosomes; MMS, methyl methanesulfonate; HU, hydroxyurea; Mms, MMS-sensitive 21; SUMO, small ubiquitin-related modifier; Nse, non-smc element; Mrc, mediator of replication checkpoint 1; DSB, double strand break; YAC, yeast artificial chromosome; Mec, mitosis entry checkpoint 1; Tor, target of rapamycin; Rad, radiation-sensitive; SPL-RING, Siz/PIAS (Protein Inhibitor of Activated STAT)-like-really interesting new gene; rDNA, ribosomal DNA; YPD, yeast extract-peptone-dextrose; SC, synthetic complete medium; 5-FOA, 5-fluoroorotic acid; ALT, alternative lengthening of telomeres. Mms21/Nse has been reported to be essential for viability in all organisms analyzed, SUMO ligase domain-defective mutants are hypersensitive to DNA-damaging agents but are viable, indicating that the SUMO ligase activity of Mms is dispensable under normal growth conditions. The C-terminal region of Mms including the SUMO ligase domain is required for resisting extrinsically induced genotoxic stress, maintenance of nucleolar integrity, and telomere clustering [28]. We investigated the role of the SUMO ligase activity of Mms during the unchallenged mitotic cell division cycle in S. cerevisiae and found evidence for its requirement in the absence of extrinsically induced genotoxic stress for maintenance of normal growth and chromosome integrity and prevention of DNA damage

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