YGL100W
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Systematic name | YGL100W |
Gene name | SEH1 |
Aliases | |
Feature type | ORF, Verified |
Coordinates | Chr VII:313234..314283 |
Primary SGDID | S000003068 |
Description of YGL100W: Component of two distinct complexes; subunit of the Nup84 nuclear pore sub-complex (NPC) and the Seh1-associated (SEA) complex; the the NUP84 subcomplex contributes to nucleocytoplasmic transport and NPC biogenesis; the SEA complex is a coatamer-related complex that associates dynamically with the vacuole; homologous to human SEH1[1][2][3][4][5][6][7]
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References
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- ↑ Dokudovskaya S, et al. (2011) A conserved coatomer-related complex containing Sec13 and Seh1 dynamically associates with the vacuole in Saccharomyces cerevisiae. Mol Cell Proteomics () SGD PMID 21454883
- ↑ Fernandez-Martinez J and Rout MP (2009) Nuclear pore complex biogenesis. Curr Opin Cell Biol 21(4):603-12 SGD PMID 19524430
- ↑ Lillo JA, et al. (2000) Disruption and phenotypic analysis of six open reading frames from the left arm of Saccharomyces cerevisiae chromosome VII. Yeast 16(4):365-75 SGD PMID 10669874
- ↑ Lutzmann M, et al. (2002) Modular self-assembly of a Y-shaped multiprotein complex from seven nucleoporins. EMBO J 21(3):387-97 SGD PMID 11823431
- ↑ Siniossoglou S, et al. (1996) A novel complex of nucleoporins, which includes Sec13p and a Sec13p homolog, is essential for normal nuclear pores. Cell 84(2):265-75 SGD PMID 8565072
- ↑ Siniossoglou S, et al. (2000) Structure and assembly of the Nup84p complex. J Cell Biol 149(1):41-54 SGD PMID 10747086
- ↑ Tous C, et al. (2011) A novel assay identifies transcript elongation roles for the Nup84 complex and RNA processing factors. EMBO J 30(10):1953-64 SGD PMID 21478823
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