Difference between revisions of "YFR013W"

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'''Description of YFR013W:''' Member of a complex (Isw1a) with Isw1p that has nucleosome-stimulated ATPase activity and represses transcription initiation by specific positioning of a promoter proximal dinucleosome; has homology to Esc8p, which is involved in silencing<ref name='S000075399'>Morillon A, et al. (2003) Isw1 chromatin remodeling ATPase coordinates transcription elongation and termination by RNA polymerase II. Cell 115(4):425-35 {{SGDpaper|S000075399}} PMID 14622597</ref><ref name='S000072478'>Vary JC Jr, et al. (2003) Yeast Isw1p forms two separable complexes in vivo. Mol Cell Biol 23(1):80-91
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'''Description of YFR013W:''' Member of a complex (Isw1a) with Isw1p that has nucleosome-stimulated ATPase activity and represses transcription initiation by specific positioning of a promoter proximal dinucleosome; has homology to Esc8p, which is involved in silencing<ref name='S000072478'>Vary JC Jr, et al. (2003) Yeast Isw1p forms two separable complexes in vivo. Mol Cell Biol 23(1):80-91 {{SGDpaper|S000072478}} PMID 12482963</ref><ref name='S000075399'>Morillon A, et al. (2003) Isw1 chromatin remodeling ATPase coordinates transcription elongation and termination by RNA polymerase II. Cell 115(4):425-35
  {{SGDpaper|S000072478}} PMID 12482963</ref>
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  {{SGDpaper|S000075399}} PMID 14622597</ref>
 
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Revision as of 04:15, 19 December 2008

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Systematic name YFR013W
Gene name IOC3
Aliases
Feature type ORF, Verified
Coordinates Chr VI:169914..172277
Primary SGDID S000001909


Description of YFR013W: Member of a complex (Isw1a) with Isw1p that has nucleosome-stimulated ATPase activity and represses transcription initiation by specific positioning of a promoter proximal dinucleosome; has homology to Esc8p, which is involved in silencing[1][2]




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References

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  1. Vary JC Jr, et al. (2003) Yeast Isw1p forms two separable complexes in vivo. Mol Cell Biol 23(1):80-91 SGD PMID 12482963
  2. Morillon A, et al. (2003) Isw1 chromatin remodeling ATPase coordinates transcription elongation and termination by RNA polymerase II. Cell 115(4):425-35 SGD PMID 14622597

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