Difference between revisions of "YDL204W"

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|valign="top" nowrap bgcolor="{{SGDblue}}"| '''Systematic name''' || [http://db.yeastgenome.org/cgi-bin/locus.pl?locus=YDL204W YDL204W]  
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|valign="top" nowrap bgcolor="{{SGDblue}}"| '''Systematic name''' || [http://www.yeastgenome.org/cgi-bin/locus.pl?dbid=S000002363 YDL204W]  
 
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|valign="top" nowrap bgcolor="{{SGDblue}}"| '''Gene name'''        ||''RTN2 ''
 
|valign="top" nowrap bgcolor="{{SGDblue}}"| '''Gene name'''        ||''RTN2 ''
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|valign="top" nowrap bgcolor="{{SGDblue}}"| '''Coordinates'''
 
|valign="top" nowrap bgcolor="{{SGDblue}}"| '''Coordinates'''
|nowrap| Chr IV:94606..95787
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|nowrap| Chr IV:94605..95786
 
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|valign="top" nowrap bgcolor="{{SGDblue}}"| '''Primary SGDID'''          || S000002363
 
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'''Description of {{PAGENAME}}:''' Protein of unknown function; has similarity to mammalian reticulon proteins; member of the RTNLA (reticulon-like A) subfamily<ref name='S000073531'>Oertle T, et al. (2003) A reticular rhapsody: phylogenic evolution and nomenclature of the RTN/Nogo gene family. FASEB J 17(10):1238-47
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'''Description of YDL204W:''' Reticulon protein that stabilizes membrane curvature; interacts with Rtn1p, Yop1p, and Sey1p to maintain tubular ER morphology; involved in nuclear pore assembly; rtn1 rtn2 yop1 triple mutant shows loss of tubular ER; interacts with exocyst subunit Sec6p, with Yip3p, and with Sbh1p; similar to and much less abundant than Rtn1p; member of the RTNLA (reticulon-like A) subfamily<ref name='S000073531'>Oertle T, et al. (2003) A reticular rhapsody: phylogenic evolution and nomenclature of the RTN/Nogo gene family. FASEB J 17(10):1238-47 {{SGDpaper|S000073531}} PMID 12832288</ref><ref name='S000124296'>Suda Y, et al. (2007) Alternative Modes of Organellar Segregation during Sporulation in Saccharomyces cerevisiae. Eukaryot Cell 6(11):2009-17 {{SGDpaper|S000124296}} PMID 17905927</ref><ref name='S000114418'>Voeltz GK, et al. (2006) A class of membrane proteins shaping the tubular endoplasmic reticulum. Cell 124(3):573-86 {{SGDpaper|S000114418}} PMID 16469703</ref><ref name='S000145140'>West M, et al. (2011) A 3D analysis of yeast ER structure reveals how ER domains are organized by membrane curvature. J Cell Biol 193(2):333-46
  {{SGDpaper|S000073531}} PMID 12832288</ref>
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  {{SGDpaper|S000145140}} PMID 21502358</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 13:05, 11 May 2012

Share your knowledge...Edit this entry! <protect>

Systematic name YDL204W
Gene name RTN2
Aliases
Feature type ORF, Verified
Coordinates Chr IV:94605..95786
Primary SGDID S000002363


Description of YDL204W: Reticulon protein that stabilizes membrane curvature; interacts with Rtn1p, Yop1p, and Sey1p to maintain tubular ER morphology; involved in nuclear pore assembly; rtn1 rtn2 yop1 triple mutant shows loss of tubular ER; interacts with exocyst subunit Sec6p, with Yip3p, and with Sbh1p; similar to and much less abundant than Rtn1p; member of the RTNLA (reticulon-like A) subfamily[1][2][3][4]




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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 carbon limited chemostat cultures versus carbon excess. [5] [6]





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References

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  1. Oertle T, et al. (2003) A reticular rhapsody: phylogenic evolution and nomenclature of the RTN/Nogo gene family. FASEB J 17(10):1238-47 SGD PMID 12832288
  2. Suda Y, et al. (2007) Alternative Modes of Organellar Segregation during Sporulation in Saccharomyces cerevisiae. Eukaryot Cell 6(11):2009-17 SGD PMID 17905927
  3. Voeltz GK, et al. (2006) A class of membrane proteins shaping the tubular endoplasmic reticulum. Cell 124(3):573-86 SGD PMID 16469703
  4. West M, et al. (2011) A 3D analysis of yeast ER structure reveals how ER domains are organized by membrane curvature. J Cell Biol 193(2):333-46 SGD PMID 21502358
  5. 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
  6. submitted by Viktor Boer on 2003-07-25

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