Difference between revisions of "YJL159W"

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'''Description of YJL159W:''' O-mannosylated heat shock protein that is secreted and covalently attached to the cell wall via beta-1,3-glucan and disulfide bridges; required for cell wall stability; induced by heat shock, oxidative stress, and nitrogen limitation<ref name='S000073012'>Moukadiri I and Zueco J (2001) Evidence for the attachment of Hsp150/Pir2 to the cell wall of Saccharomyces cerevisiae through disulfide bridges. FEMS Yeast Res 1(3):241-5 {{SGDpaper|S000073012}} PMID 12702350</ref><ref name='S000056103'>Toh-e A, et al. (1993) Three yeast genes, PIR1, PIR2 and PIR3, containing internal tandem repeats, are related to each other, and PIR1 and PIR2 are required for tolerance to heat shock. Yeast 9(5):481-94 {{SGDpaper|S000056103}} PMID 8322511</ref><ref name='S000055813'>Russo P, et al. (1992) A heat shock gene from Saccharomyces cerevisiae encoding a secretory glycoprotein. Proc Natl Acad Sci U S A 89(9):3671-5 {{SGDpaper|S000055813}} PMID 1570286</ref><ref name='S000051733'>Kapteyn JC, et al. (1999) The contribution of the O-glycosylated protein Pir2p/Hsp150 to the construction of the yeast cell wall in wild-type cells and beta 1,6-glucan-deficient mutants. Mol Microbiol 31(6):1835-44 {{SGDpaper|S000051733}} PMID 10209754</ref><ref name='S000043817'>Russo P, et al. (1993) Dual regulation by heat and nutrient stress of the yeast HSP150 gene encoding a secretory glycoprotein. Mol Gen Genet 239(1-2):273-80 {{SGDpaper|S000043817}} PMID 8510655</ref><ref name='S000042940'>Ezaki B, et al. (1998) Protective roles of two aluminum (Al)-induced genes, HSP150 and SED1 of Saccharomyces cerevisiae, in Al and oxidative stresses. FEMS Microbiol Lett 159(1):99-105 {{SGDpaper|S000042940}} PMID 9485599</ref><ref name='S000039809'>Mrsa V and Tanner W (1999) Role of NaOH-extractable cell wall proteins Ccw5p, Ccw6p, Ccw7p and Ccw8p (members of the Pir protein family) in stability of the Saccharomyces cerevisiae cell wall. Yeast 15(10A):813-20
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'''Description of YJL159W:''' O-mannosylated heat shock protein that is secreted and covalently attached to the cell wall via beta-1,3-glucan and disulfide bridges; required for cell wall stability; induced by heat shock, oxidative stress, and nitrogen limitation<ref name='S000039809'>Mrsa V and Tanner W (1999) Role of NaOH-extractable cell wall proteins Ccw5p, Ccw6p, Ccw7p and Ccw8p (members of the Pir protein family) in stability of the Saccharomyces cerevisiae cell wall. Yeast 15(10A):813-20 {{SGDpaper|S000039809}} PMID 10407261</ref><ref name='S000042940'>Ezaki B, et al. (1998) Protective roles of two aluminum (Al)-induced genes, HSP150 and SED1 of Saccharomyces cerevisiae, in Al and oxidative stresses. FEMS Microbiol Lett 159(1):99-105 {{SGDpaper|S000042940}} PMID 9485599</ref><ref name='S000043817'>Russo P, et al. (1993) Dual regulation by heat and nutrient stress of the yeast HSP150 gene encoding a secretory glycoprotein. Mol Gen Genet 239(1-2):273-80 {{SGDpaper|S000043817}} PMID 8510655</ref><ref name='S000051733'>Kapteyn JC, et al. (1999) The contribution of the O-glycosylated protein Pir2p/Hsp150 to the construction of the yeast cell wall in wild-type cells and beta 1,6-glucan-deficient mutants. Mol Microbiol 31(6):1835-44 {{SGDpaper|S000051733}} PMID 10209754</ref><ref name='S000056103'>Toh-e A, et al. (1993) Three yeast genes, PIR1, PIR2 and PIR3, containing internal tandem repeats, are related to each other, and PIR1 and PIR2 are required for tolerance to heat shock. Yeast 9(5):481-94 {{SGDpaper|S000056103}} PMID 8322511</ref><ref name='S000055813'>Russo P, et al. (1992) A heat shock gene from Saccharomyces cerevisiae encoding a secretory glycoprotein. Proc Natl Acad Sci U S A 89(9):3671-5 {{SGDpaper|S000055813}} PMID 1570286</ref><ref name='S000073012'>Moukadiri I and Zueco J (2001) Evidence for the attachment of Hsp150/Pir2 to the cell wall of Saccharomyces cerevisiae through disulfide bridges. FEMS Yeast Res 1(3):241-5
  {{SGDpaper|S000039809}} PMID 10407261</ref>
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  {{SGDpaper|S000073012}} PMID 12702350</ref>
 
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Revision as of 14:05, 31 March 2009

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Systematic name YJL159W
Gene name HSP150
Aliases CCW7, ORE1, PIR2
Feature type ORF, Verified
Coordinates Chr X:120445..121686
Primary SGDID S000003695


Description of YJL159W: O-mannosylated heat shock protein that is secreted and covalently attached to the cell wall via beta-1,3-glucan and disulfide bridges; required for cell wall stability; induced by heat shock, oxidative stress, and nitrogen limitation[1][2][3][4][5][6][7]




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References

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  1. Mrsa V and Tanner W (1999) Role of NaOH-extractable cell wall proteins Ccw5p, Ccw6p, Ccw7p and Ccw8p (members of the Pir protein family) in stability of the Saccharomyces cerevisiae cell wall. Yeast 15(10A):813-20 SGD PMID 10407261
  2. Ezaki B, et al. (1998) Protective roles of two aluminum (Al)-induced genes, HSP150 and SED1 of Saccharomyces cerevisiae, in Al and oxidative stresses. FEMS Microbiol Lett 159(1):99-105 SGD PMID 9485599
  3. Russo P, et al. (1993) Dual regulation by heat and nutrient stress of the yeast HSP150 gene encoding a secretory glycoprotein. Mol Gen Genet 239(1-2):273-80 SGD PMID 8510655
  4. Kapteyn JC, et al. (1999) The contribution of the O-glycosylated protein Pir2p/Hsp150 to the construction of the yeast cell wall in wild-type cells and beta 1,6-glucan-deficient mutants. Mol Microbiol 31(6):1835-44 SGD PMID 10209754
  5. Toh-e A, et al. (1993) Three yeast genes, PIR1, PIR2 and PIR3, containing internal tandem repeats, are related to each other, and PIR1 and PIR2 are required for tolerance to heat shock. Yeast 9(5):481-94 SGD PMID 8322511
  6. Russo P, et al. (1992) A heat shock gene from Saccharomyces cerevisiae encoding a secretory glycoprotein. Proc Natl Acad Sci U S A 89(9):3671-5 SGD PMID 1570286
  7. Moukadiri I and Zueco J (2001) Evidence for the attachment of Hsp150/Pir2 to the cell wall of Saccharomyces cerevisiae through disulfide bridges. FEMS Yeast Res 1(3):241-5 SGD PMID 12702350

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