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Exo1 phosphorylation status controls the hydroxyurea sensitivity of cells lacking the Pol32 subunit of DNA polymerases delta and zeta
Institution:1. Center for Reproductive Medicine, Shandong Provincial Hospital Affiliated to Shandong University, 324 Jingwu Road, Jinan, 250021, China;2. National Research Center for Assisted Reproductive Technology and Reproductive Genetics, Jinan, China;3. The Key Laboratory for Reproductive Endocrinology of Ministry of Education, Jinan, China;4. Shandong Provincial Key Laboratory of Reproductive Medicine, Jinan, China;5. Biological Sciences, College of Liberal Arts and Science, University of Connecticut, 2131 Hillside Rd, Storrs, CT 06269, USA;6. Department of Obstetrics and Gynecology, Renji Hospital Affiliated to Shanghai Jiaotong University, Shanghai, China
Abstract:Exo1 belongs to the Rad2 family of structure-specific nucleases and possesses 5′–3′ exonuclease activity on double-stranded DNA substrates. Exo1 interacts physically with the DNA mismatch repair (MMR) proteins Msh2 and Mlh1 and is involved in the excision of the mispaired nucleotide. Independent of its role in MMR, Exo1 contributes to long-range resection of DNA double-strand break (DSB) ends to facilitate their repair by homologous recombination (HR), and was recently identified as a component of error-free DNA damage tolerance pathways. Here, we show that Exo1 activity increases the hydroxyurea sensitivity of cells lacking Pol32, a subunit of DNA polymerases δ and ζ. Both, phospho-mimicking and dephospho-mimicking exo1 mutants act as hypermorphs, as evidenced by an increase in HU sensitivity of pol32Δ cells, suggesting that they are trapped in an active form and that phosphorylation of Exo1 at residues S372, S567, S587, S692 is necessary, but insufficient, for the accurate regulation of Exo1 activity at stalled replication forks. In contrast, neither phosphorylation status is important for Exo1's role in MMR or in the suppression of genome instability in cells lacking Sgs1 helicase. This ability of an EXO1 deletion to suppress the HU hypersensitivity of pol32Δ cells is in contrast to the negative genetic interaction between deletions of EXO1 and POL32 in MMS-treated cells as well as the role of EXO1 in DNA-damage treated rad53 and mec1 mutants.
Keywords:Pol32  Exo1  Exo1 phosphorylation  Gross-chromosomal rearrangements  Hydroxyurea hypersensitivity
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