Difference between revisions of "YFR002W"
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− | |valign="top" nowrap bgcolor="{{SGDblue}}"| '''Systematic name''' || [http:// | + | |valign="top" nowrap bgcolor="{{SGDblue}}"| '''Systematic name''' || [http://www.yeastgenome.org/cgi-bin/locus.pl?dbid=S000001898 YFR002W] |
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|valign="top" nowrap bgcolor="{{SGDblue}}"| '''Gene name''' ||''NIC96 '' | |valign="top" nowrap bgcolor="{{SGDblue}}"| '''Gene name''' ||''NIC96 '' | ||
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|valign="top" nowrap bgcolor="{{SGDblue}}"| '''Coordinates''' | |valign="top" nowrap bgcolor="{{SGDblue}}"| '''Coordinates''' | ||
− | |nowrap| Chr VI: | + | |nowrap| Chr VI:150016..152535 |
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− | | | + | |valign="top" nowrap bgcolor="{{SGDblue}}"| '''Primary SGDID''' || S000001898 |
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− | '''Description of | + | '''Description of YFR002W:''' Linker nucleoporin component of the nuclear pore complex (NPC); also part of the NPC nuclear basket; contributes to nucleocytoplasmic transport and NPC biogenesis; forms stable associations with three FG-nucleoporins (Nsp1p, Nup57p, and Nup49p)<ref name='S000124850'>Alber F, et al. (2007) The molecular architecture of the nuclear pore complex. Nature 450(7170):695-701 {{SGDpaper|S000124850}} PMID 18046406</ref><ref name='S000068986'>Bailer SM, et al. (2001) The Nsp1p carboxy-terminal domain is organized into functionally distinct coiled-coil regions required for assembly of nucleoporin subcomplexes and nucleocytoplasmic transport. Mol Cell Biol 21(23):7944-55 {{SGDpaper|S000068986}} PMID 11689687</ref><ref name='S000052968'>Fahrenkrog B, et al. (1998) Molecular architecture of the yeast nuclear pore complex: localization of Nsp1p subcomplexes. J Cell Biol 143(3):577-88 {{SGDpaper|S000052968}} PMID 9813081</ref><ref name='S000040785'>Grandi P, et al. (1993) Purification of NSP1 reveals complex formation with 'GLFG' nucleoporins and a novel nuclear pore protein NIC96. EMBO J 12(8):3061-71 {{SGDpaper|S000040785}} PMID 7688296</ref><ref name='S000057501'>Grandi P, et al. (1995) Functional interaction of Nic96p with a core nucleoporin complex consisting of Nsp1p, Nup49p and a novel protein Nup57p. EMBO J 14(1):76-87 {{SGDpaper|S000057501}} PMID 7828598</ref><ref name='S000086510'>Lutzmann M, et al. (2005) Reconstitution of Nup157 and Nup145N into the Nup84 complex. J Biol Chem 280(18):18442-51 {{SGDpaper|S000086510}} PMID 15741174</ref><ref name='S000056415'>Rout MP, et al. (2000) The yeast nuclear pore complex: composition, architecture, and transport mechanism. J Cell Biol 148(4):635-51 {{SGDpaper|S000056415}} PMID 10684247</ref><ref name='S000058025'>Schlaich NL, et al. (1997) In vitro reconstitution of a heterotrimeric nucleoporin complex consisting of recombinant Nsp1p, Nup49p, and Nup57p. Mol Biol Cell 8(1):33-46 {{SGDpaper|S000058025}} PMID 9017593</ref><ref name='S000057879'>Zabel U, et al. (1996) Nic96p is required for nuclear pore formation and functionally interacts with a novel nucleoporin, Nup188p. J Cell Biol 133(6):1141-52 |
− | {{SGDpaper| | + | {{SGDpaper|S000057879}} PMID 8682854</ref> |
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==Community Commentary== | ==Community Commentary== | ||
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+ | Specifically higher expression in carbon limited chemostat cultures versus carbon excess. | ||
+ | <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. | ||
+ | J Biol Chem 278(5):3265-74</ref> | ||
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==References== | ==References== | ||
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Latest revision as of 14:05, 19 June 2012
Share your knowledge...Edit this entry! <protect>
Systematic name | YFR002W |
Gene name | NIC96 |
Aliases | |
Feature type | ORF, Verified |
Coordinates | Chr VI:150016..152535 |
Primary SGDID | S000001898 |
Description of YFR002W: Linker nucleoporin component of the nuclear pore complex (NPC); also part of the NPC nuclear basket; contributes to nucleocytoplasmic transport and NPC biogenesis; forms stable associations with three FG-nucleoporins (Nsp1p, Nup57p, and Nup49p)[1][2][3][4][5][6][7][8][9]
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Contents
Community Commentary
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References
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- ↑ Alber F, et al. (2007) The molecular architecture of the nuclear pore complex. Nature 450(7170):695-701 SGD PMID 18046406
- ↑ Bailer SM, et al. (2001) The Nsp1p carboxy-terminal domain is organized into functionally distinct coiled-coil regions required for assembly of nucleoporin subcomplexes and nucleocytoplasmic transport. Mol Cell Biol 21(23):7944-55 SGD PMID 11689687
- ↑ Fahrenkrog B, et al. (1998) Molecular architecture of the yeast nuclear pore complex: localization of Nsp1p subcomplexes. J Cell Biol 143(3):577-88 SGD PMID 9813081
- ↑ Grandi P, et al. (1993) Purification of NSP1 reveals complex formation with 'GLFG' nucleoporins and a novel nuclear pore protein NIC96. EMBO J 12(8):3061-71 SGD PMID 7688296
- ↑ Grandi P, et al. (1995) Functional interaction of Nic96p with a core nucleoporin complex consisting of Nsp1p, Nup49p and a novel protein Nup57p. EMBO J 14(1):76-87 SGD PMID 7828598
- ↑ Lutzmann M, et al. (2005) Reconstitution of Nup157 and Nup145N into the Nup84 complex. J Biol Chem 280(18):18442-51 SGD PMID 15741174
- ↑ Rout MP, et al. (2000) The yeast nuclear pore complex: composition, architecture, and transport mechanism. J Cell Biol 148(4):635-51 SGD PMID 10684247
- ↑ Schlaich NL, et al. (1997) In vitro reconstitution of a heterotrimeric nucleoporin complex consisting of recombinant Nsp1p, Nup49p, and Nup57p. Mol Biol Cell 8(1):33-46 SGD PMID 9017593
- ↑ Zabel U, et al. (1996) Nic96p is required for nuclear pore formation and functionally interacts with a novel nucleoporin, Nup188p. J Cell Biol 133(6):1141-52 SGD PMID 8682854
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