Difference between revisions of "YDL059C"

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|valign="top" nowrap bgcolor="{{SGDblue}}"| '''Systematic name''' || [http://db.yeastgenome.org/cgi-bin/locus.pl?locus=YDL059C YDL059C]  
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|valign="top" nowrap bgcolor="{{SGDblue}}"| '''Systematic name''' || [http://www.yeastgenome.org/cgi-bin/locus.pl?dbid=S000002217 YDL059C]  
 
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|valign="top" nowrap bgcolor="{{SGDblue}}"| '''Gene name'''        ||''RAD59 ''
 
|valign="top" nowrap bgcolor="{{SGDblue}}"| '''Gene name'''        ||''RAD59 ''
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|nowrap| Chr IV:344953..344237
 
|nowrap| Chr IV:344953..344237
 
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|valign="top" nowrap bgcolor="{{SGDblue}}"| '''Primary SGDID'''          || S000002217
 
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'''Description of {{PAGENAME}}:''' Protein involved in the repair of double-strand breaks in DNA during vegetative growth via recombination and single-strand annealing; anneals complementary single-stranded DNA; homologous to Rad52p<ref name='S000071925'>Symington LS (2002) Role of RAD52 epistasis group genes in homologous recombination and double-strand break repair. Microbiol Mol Biol Rev 66(4):630-70, table of contents {{SGDpaper|S000071925}} PMID 12456786</ref><ref name='S000069022'>Davis AP and Symington LS (2001) The yeast recombinational repair protein Rad59 interacts with Rad52 and stimulates single-strand annealing. Genetics 159(2):515-25 {{SGDpaper|S000069022}} PMID 11606529</ref><ref name='S000047792'>Petukhova G, et al. (1999) Single strand DNA binding and annealing activities in the yeast recombination factor Rad59. J Biol Chem 274(48):33839-42
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'''Description of YDL059C:''' Protein involved in the repair of double-strand breaks in DNA during vegetative growth via recombination and single-strand annealing; anneals complementary single-stranded DNA; homologous to Rad52p<ref name='S000069022'>Davis AP and Symington LS (2001) The yeast recombinational repair protein Rad59 interacts with Rad52 and stimulates single-strand annealing. Genetics 159(2):515-25 {{SGDpaper|S000069022}} PMID 11606529</ref><ref name='S000047792'>Petukhova G, et al. (1999) Single strand DNA binding and annealing activities in the yeast recombination factor Rad59. J Biol Chem 274(48):33839-42 {{SGDpaper|S000047792}} PMID 10567339</ref><ref name='S000071925'>Symington LS (2002) Role of RAD52 epistasis group genes in homologous recombination and double-strand break repair. Microbiol Mol Biol Rev 66(4):630-70, table of contents
  {{SGDpaper|S000047792}} PMID 10567339</ref>
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  {{SGDpaper|S000071925}} PMID 12456786</ref>
 
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==Community Commentary==
 
==Community Commentary==
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Specifically higher expression in carbon limited chemostat cultures versus carbon excess.
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<ref>Boer VM, et al. (2003) The genome-wide transcriptional responses of Saccharomyces cerevisiae grown on glucose in aerobic chemostat cultures limited for carbon, nitrogen, phosphorus, or sulfur.
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J Biol Chem 278(5):3265-74</ref>
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==References==
 
==References==
 
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Latest revision as of 06:45, 23 January 2012

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Systematic name YDL059C
Gene name RAD59
Aliases
Feature type ORF, Verified
Coordinates Chr IV:344953..344237
Primary SGDID S000002217


Description of YDL059C: Protein involved in the repair of double-strand breaks in DNA during vegetative growth via recombination and single-strand annealing; anneals complementary single-stranded DNA; homologous to Rad52p[1][2][3]




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Community Commentary

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DNA and RNA Details

Other DNA and RNA Details

Other Topic: expression

Specifically higher expression in sulfur limited chemostat cultures versus sulfur excess. [4] [5]





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References

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  1. Davis AP and Symington LS (2001) The yeast recombinational repair protein Rad59 interacts with Rad52 and stimulates single-strand annealing. Genetics 159(2):515-25 SGD PMID 11606529
  2. Petukhova G, et al. (1999) Single strand DNA binding and annealing activities in the yeast recombination factor Rad59. J Biol Chem 274(48):33839-42 SGD PMID 10567339
  3. Symington LS (2002) Role of RAD52 epistasis group genes in homologous recombination and double-strand break repair. Microbiol Mol Biol Rev 66(4):630-70, table of contents SGD PMID 12456786
  4. Boer VM, et al. (2003) The genome-wide transcriptional responses of Saccharomyces cerevisiae grown on glucose in aerobic chemostat cultures limited for carbon, nitrogen, phosphorus, or sulfur. J Biol Chem 278(5):3265-74 SGD PMID 12414795
  5. submitted by Viktor Boer on 2003-07-25

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