Difference between revisions of "YLR289W"

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'''Description of YLR289W:''' Mitochondrial GTPase of unknown function, similar to E. coli elongation factor-type GTP-binding protein LepA and to LK1236.1 from Caenorhabditis elegans<ref name='S000074185'>Huh WK, et al. (2003) Global analysis of protein localization in budding yeast. Nature 425(6959):686-91 {{SGDpaper|S000074185}} PMID 14562095</ref><ref name='S000045172'>Kiser GL and Weinert TA (1995) GUF1, a gene encoding a novel evolutionarily conserved GTPase in budding yeast. Yeast 11(13):1311-6
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'''Description of YLR289W:''' Mitochondrial matrix GTPase that associates with mitochondrial ribosomes; important for translation under temperature and nutrient stress; may have a role in translational fidelity; similar to bacterial LepA elongation factor<ref name='S000126281'>Bauerschmitt H, et al. (2008) The Membrane-bound GTPase Guf1 Promotes Mitochondrial Protein Synthesis under Suboptimal Conditions. J Biol Chem 283(25):17139-46 {{SGDpaper|S000126281}} PMID 18442968</ref><ref name='S000045172'>Kiser GL and Weinert TA (1995) GUF1, a gene encoding a novel evolutionarily conserved GTPase in budding yeast. Yeast 11(13):1311-6
 
  {{SGDpaper|S000045172}} PMID 8553703</ref>
 
  {{SGDpaper|S000045172}} PMID 8553703</ref>
 
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Revision as of 07:21, 26 February 2009

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Systematic name YLR289W
Gene name GUF1
Aliases
Feature type ORF, Verified
Coordinates Chr XII:715091..717028
Primary SGDID S000004280


Description of YLR289W: Mitochondrial matrix GTPase that associates with mitochondrial ribosomes; important for translation under temperature and nutrient stress; may have a role in translational fidelity; similar to bacterial LepA elongation factor[1][2]




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References

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  1. Bauerschmitt H, et al. (2008) The Membrane-bound GTPase Guf1 Promotes Mitochondrial Protein Synthesis under Suboptimal Conditions. J Biol Chem 283(25):17139-46 SGD PMID 18442968
  2. Kiser GL and Weinert TA (1995) GUF1, a gene encoding a novel evolutionarily conserved GTPase in budding yeast. Yeast 11(13):1311-6 SGD PMID 8553703

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