Difference between revisions of "YGL240W"

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'''Description of YGL240W:''' Processivity factor required for the ubiquitination activity of the anaphase promoting complex (APC), mediates the activity of the APC by contributing to substrate recognition; involved in cyclin proteolysis<ref name='S000046390'>Hwang LH and Murray AW (1997) A novel yeast screen for mitotic arrest mutants identifies DOC1, a new gene involved in cyclin proteolysis. Mol Biol Cell 8(10):1877-87 {{SGDpaper|S000046390}} PMID 9348530</ref><ref name='S000061630'>Grossberger R, et al. (1999) Characterization of the DOC1/APC10 subunit of the yeast and the human anaphase-promoting complex. J Biol Chem 274(20):14500-7 {{SGDpaper|S000061630}} PMID 10318877</ref><ref name='S000069423'>Au SW, et al. (2002) Implications for the ubiquitination reaction of the anaphase-promoting complex from the crystal structure of the Doc1/Apc10 subunit. J Mol Biol 316(4):955-68 {{SGDpaper|S000069423}} PMID 11884135</ref><ref name='S000071780'>Carroll CW and Morgan DO (2002) The Doc1 subunit is a processivity factor for the anaphase-promoting complex. Nat Cell Biol 4(11):880-7 {{SGDpaper|S000071780}} PMID 12402045</ref><ref name='S000072817'>Passmore LA, et al. (2003) Doc1 mediates the activity of the anaphase-promoting complex by contributing to substrate recognition. EMBO J 22(4):786-96
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'''Description of YGL240W:''' Processivity factor required for the ubiquitination activity of the anaphase promoting complex (APC), mediates the activity of the APC by contributing to substrate recognition; involved in cyclin proteolysis<ref name='S000069423'>Au SW, et al. (2002) Implications for the ubiquitination reaction of the anaphase-promoting complex from the crystal structure of the Doc1/Apc10 subunit. J Mol Biol 316(4):955-68 {{SGDpaper|S000069423}} PMID 11884135</ref><ref name='S000071780'>Carroll CW and Morgan DO (2002) The Doc1 subunit is a processivity factor for the anaphase-promoting complex. Nat Cell Biol 4(11):880-7 {{SGDpaper|S000071780}} PMID 12402045</ref><ref name='S000061630'>Grossberger R, et al. (1999) Characterization of the DOC1/APC10 subunit of the yeast and the human anaphase-promoting complex. J Biol Chem 274(20):14500-7 {{SGDpaper|S000061630}} PMID 10318877</ref><ref name='S000046390'>Hwang LH and Murray AW (1997) A novel yeast screen for mitotic arrest mutants identifies DOC1, a new gene involved in cyclin proteolysis. Mol Biol Cell 8(10):1877-87 {{SGDpaper|S000046390}} PMID 9348530</ref><ref name='S000072817'>Passmore LA, et al. (2003) Doc1 mediates the activity of the anaphase-promoting complex by contributing to substrate recognition. EMBO J 22(4):786-96
 
  {{SGDpaper|S000072817}} PMID 12574115</ref>
 
  {{SGDpaper|S000072817}} PMID 12574115</ref>
 
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Revision as of 13:05, 25 February 2010

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Systematic name YGL240W
Gene name DOC1
Aliases APC10
Feature type ORF, Verified
Coordinates Chr VII:48613..49365
Primary SGDID S000003209


Description of YGL240W: Processivity factor required for the ubiquitination activity of the anaphase promoting complex (APC), mediates the activity of the APC by contributing to substrate recognition; involved in cyclin proteolysis[1][2][3][4][5]




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References

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  1. Au SW, et al. (2002) Implications for the ubiquitination reaction of the anaphase-promoting complex from the crystal structure of the Doc1/Apc10 subunit. J Mol Biol 316(4):955-68 SGD PMID 11884135
  2. Carroll CW and Morgan DO (2002) The Doc1 subunit is a processivity factor for the anaphase-promoting complex. Nat Cell Biol 4(11):880-7 SGD PMID 12402045
  3. Grossberger R, et al. (1999) Characterization of the DOC1/APC10 subunit of the yeast and the human anaphase-promoting complex. J Biol Chem 274(20):14500-7 SGD PMID 10318877
  4. Hwang LH and Murray AW (1997) A novel yeast screen for mitotic arrest mutants identifies DOC1, a new gene involved in cyclin proteolysis. Mol Biol Cell 8(10):1877-87 SGD PMID 9348530
  5. Passmore LA, et al. (2003) Doc1 mediates the activity of the anaphase-promoting complex by contributing to substrate recognition. EMBO J 22(4):786-96 SGD PMID 12574115

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