YDR386W

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Systematic name YDR386W
Gene name MUS81
Aliases SLX3
Feature type ORF, Verified
Coordinates Chr IV:1246084..1247982
Primary SGDID S000002794


Description of YDR386W: Subunit of the structure-specific Mms4p-Mus81p endonuclease that cleaves branched DNA; involved in DNA repair, replication fork stability, and joint molecule formation/resolution during meiotic recombination; helix-hairpin-helix protein; phosphorylation of the non-catalytic subunit Mms4p by Cdc28p and Cdcp during mitotic cell cycle activates the function of Mms4p-Mus81p[1][2][3][4][5][6]




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References

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  1. Bastin-Shanower SA, et al. (2003) The mechanism of Mus81-Mms4 cleavage site selection distinguishes it from the homologous endonuclease Rad1-Rad10. Mol Cell Biol 23(10):3487-96 SGD PMID 12724407
  2. Fu Y and Xiao W (2003) Functional domains required for the Saccharomyces cerevisiae Mus81-Mms4 endonuclease complex formation and nuclear localization. DNA Repair (Amst) 2(12):1435-47 SGD PMID 14642571
  3. Gallo-Fernandez M, et al. (2012) Cell cycle-dependent regulation of the nuclease activity of Mus81-Eme1/Mms4. Nucleic Acids Res () SGD PMID 22730299
  4. Interthal H and Heyer WD (2000) MUS81 encodes a novel helix-hairpin-helix protein involved in the response to UV- and methylation-induced DNA damage in Saccharomyces cerevisiae. Mol Gen Genet 263(5):812-27 SGD PMID 10905349
  5. Jessop L and Lichten M (2008) Mus81/Mms4 endonuclease and Sgs1 helicase collaborate to ensure proper recombination intermediate metabolism during meiosis. Mol Cell 31(3):313-23 SGD PMID 18691964
  6. Oh SD, et al. (2008) RecQ helicase, Sgs1, and XPF family endonuclease, Mus81-Mms4, resolve aberrant joint molecules during meiotic recombination. Mol Cell 31(3):324-36 SGD PMID 18691965

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