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{{ | '''Eukaryotic translation initiation factor 4E transporter''' is a [[protein]] that in humans is encoded by the ''EIF4ENIF1'' [[gene]].<ref name="pmid10856257">{{cite journal | vauthors = Dostie J, Ferraiuolo M, Pause A, Adam SA, Sonenberg N | title = A novel shuttling protein, 4E-T, mediates the nuclear import of the mRNA 5' cap-binding protein, eIF4E | journal = EMBO J | volume = 19 | issue = 12 | pages = 3142–56 |date=Aug 2000 | pmid = 10856257 | pmc = 203362 | doi = 10.1093/emboj/19.12.3142 }}</ref><ref name="entrez">{{cite web | title = Entrez Gene: EIF4ENIF1 eukaryotic translation initiation factor 4E nuclear import factor 1| url = https://www.ncbi.nlm.nih.gov/sites/entrez?Db=gene&Cmd=ShowDetailView&TermToSearch=56478| accessdate = }}</ref> | ||
}} | |||
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| summary_text = The protein encoded by this gene is a nucleocytoplasmic shuttle protein for the translation initiation factor eIF4E. This shuttle protein interacts with the importin alpha-beta complex to mediate nuclear import of eIF4E. It is predominantly cytoplasmic;its own nuclear import is regulated by a nuclear localization signal and nuclear export signals.<ref name="entrez">{{cite web | title = Entrez Gene: EIF4ENIF1 eukaryotic translation initiation factor 4E nuclear import factor 1| url = | | summary_text = The protein encoded by this gene is a nucleocytoplasmic shuttle protein for the translation initiation factor eIF4E. This shuttle protein interacts with the importin alpha-beta complex to mediate nuclear import of eIF4E. It is predominantly cytoplasmic;its own nuclear import is regulated by a nuclear localization signal and nuclear export signals.<ref name="entrez">{{cite web | title = Entrez Gene: EIF4ENIF1 eukaryotic translation initiation factor 4E nuclear import factor 1| url = https://www.ncbi.nlm.nih.gov/sites/entrez?Db=gene&Cmd=ShowDetailView&TermToSearch=56478| accessdate = }}</ref> | ||
}} | }} | ||
==Interactions== | |||
EIF4ENIF1 has been shown to [[Protein-protein interaction|interact]] with [[EIF4E]].<ref name=pmid10856257 /> | |||
==References== | ==References== | ||
{{reflist | {{reflist}} | ||
==Further reading== | ==Further reading== | ||
{{refbegin | 2}} | {{refbegin | 2}} | ||
{{PBB_Further_reading | {{PBB_Further_reading | ||
| citations = | | citations = | ||
*{{cite journal | | *{{cite journal | vauthors=Strausberg RL, Feingold EA, Grouse LH |title=Generation and initial analysis of more than 15,000 full-length human and mouse cDNA sequences. |journal=Proc. Natl. Acad. Sci. U.S.A. |volume=99 |issue= 26 |pages= 16899–903 |year= 2003 |pmid= 12477932 |doi= 10.1073/pnas.242603899 | pmc=139241 |display-authors=etal}} | ||
*{{cite journal | vauthors=Warner DR, Roberts EA, Greene RM, Pisano MM |title=Identification of novel Smad binding proteins. |journal=Biochem. Biophys. Res. Commun. |volume=312 |issue= 4 |pages= 1185–90 |year= 2004 |pmid= 14651998 |doi=10.1016/j.bbrc.2003.11.049 }} | |||
*{{cite journal | | *{{cite journal | vauthors=Ota T, Suzuki Y, Nishikawa T |title=Complete sequencing and characterization of 21,243 full-length human cDNAs. |journal=Nat. Genet. |volume=36 |issue= 1 |pages= 40–5 |year= 2004 |pmid= 14702039 |doi= 10.1038/ng1285 |display-authors=etal}} | ||
*{{cite journal | | *{{cite journal | vauthors=Ballif BA, Villén J, Beausoleil SA |title=Phosphoproteomic analysis of the developing mouse brain. |journal=Mol. Cell. Proteomics |volume=3 |issue= 11 |pages= 1093–101 |year= 2005 |pmid= 15345747 |doi= 10.1074/mcp.M400085-MCP200 |display-authors=etal}} | ||
*{{cite journal | | *{{cite journal | vauthors=Collins JE, Wright CL, Edwards CA |title=A genome annotation-driven approach to cloning the human ORFeome. |journal=Genome Biol. |volume=5 |issue= 10 |pages= R84 |year= 2005 |pmid= 15461802 |doi= 10.1186/gb-2004-5-10-r84 | pmc=545604 |display-authors=etal}} | ||
*{{cite journal | | *{{cite journal | vauthors=Gerhard DS, Wagner L, Feingold EA |title=The status, quality, and expansion of the NIH full-length cDNA project: the Mammalian Gene Collection (MGC). |journal=Genome Res. |volume=14 |issue= 10B |pages= 2121–7 |year= 2004 |pmid= 15489334 |doi= 10.1101/gr.2596504 | pmc=528928 |display-authors=etal}} | ||
*{{cite journal | | *{{cite journal | vauthors=Andrei MA, Ingelfinger D, Heintzmann R |title=A role for eIF4E and eIF4E-transporter in targeting mRNPs to mammalian processing bodies. |journal=RNA |volume=11 |issue= 5 |pages= 717–27 |year= 2005 |pmid= 15840819 |doi= 10.1261/rna.2340405 | pmc=1370757 |display-authors=etal}} | ||
*{{cite journal | | *{{cite journal | vauthors=Ferraiuolo MA, Basak S, Dostie J |title=A role for the eIF4E-binding protein 4E-T in P-body formation and mRNA decay. |journal=J. Cell Biol. |volume=170 |issue= 6 |pages= 913–24 |year= 2005 |pmid= 16157702 |doi= 10.1083/jcb.200504039 | pmc=2171455 |display-authors=etal}} | ||
*{{cite journal | | *{{cite journal | vauthors=Rual JF, Venkatesan K, Hao T |title=Towards a proteome-scale map of the human protein-protein interaction network. |journal=Nature |volume=437 |issue= 7062 |pages= 1173–8 |year= 2005 |pmid= 16189514 |doi= 10.1038/nature04209 |display-authors=etal}} | ||
*{{cite journal | | *{{cite journal | vauthors=Wichroski MJ, Robb GB, Rana TM |title=Human retroviral host restriction factors APOBEC3G and APOBEC3F localize to mRNA processing bodies. |journal=PLoS Pathog. |volume=2 |issue= 5 |pages= e41 |year= 2006 |pmid= 16699599 |doi= 10.1371/journal.ppat.0020041 | pmc=1458959 }} | ||
*{{cite journal | | *{{cite journal | vauthors=Lim J, Hao T, Shaw C |title=A protein-protein interaction network for human inherited ataxias and disorders of Purkinje cell degeneration. |journal=Cell |volume=125 |issue= 4 |pages= 801–14 |year= 2006 |pmid= 16713569 |doi= 10.1016/j.cell.2006.03.032 |display-authors=etal}} | ||
*{{cite journal | | *{{cite journal | vauthors=Denoeud F, Kapranov P, Ucla C |title=Prominent use of distal 5' transcription start sites and discovery of a large number of additional exons in ENCODE regions. |journal=Genome Res. |volume=17 |issue= 6 |pages= 746–59 |year= 2007 |pmid= 17567994 |doi= 10.1101/gr.5660607 | pmc=1891335 |display-authors=etal}} | ||
*{{cite journal | | |||
}} | }} | ||
{{refend}} | {{refend}} | ||
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{{gene-22-stub}} | {{gene-22-stub}} | ||
Latest revision as of 00:25, 31 August 2017
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External IDs | GeneCards: [1] | ||||||
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Species | Human | Mouse | |||||
Entrez |
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Ensembl |
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UniProt |
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RefSeq (mRNA) |
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RefSeq (protein) |
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Location (UCSC) | n/a | n/a | |||||
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Wikidata | |||||||
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Eukaryotic translation initiation factor 4E transporter is a protein that in humans is encoded by the EIF4ENIF1 gene.[1][2]
The protein encoded by this gene is a nucleocytoplasmic shuttle protein for the translation initiation factor eIF4E. This shuttle protein interacts with the importin alpha-beta complex to mediate nuclear import of eIF4E. It is predominantly cytoplasmic;its own nuclear import is regulated by a nuclear localization signal and nuclear export signals.[2]
Interactions
EIF4ENIF1 has been shown to interact with EIF4E.[1]
References
- ↑ 1.0 1.1 Dostie J, Ferraiuolo M, Pause A, Adam SA, Sonenberg N (Aug 2000). "A novel shuttling protein, 4E-T, mediates the nuclear import of the mRNA 5' cap-binding protein, eIF4E". EMBO J. 19 (12): 3142–56. doi:10.1093/emboj/19.12.3142. PMC 203362. PMID 10856257.
- ↑ 2.0 2.1 "Entrez Gene: EIF4ENIF1 eukaryotic translation initiation factor 4E nuclear import factor 1".
Further reading
- Strausberg RL, Feingold EA, Grouse LH, et al. (2003). "Generation and initial analysis of more than 15,000 full-length human and mouse cDNA sequences". Proc. Natl. Acad. Sci. U.S.A. 99 (26): 16899–903. doi:10.1073/pnas.242603899. PMC 139241. PMID 12477932.
- Warner DR, Roberts EA, Greene RM, Pisano MM (2004). "Identification of novel Smad binding proteins". Biochem. Biophys. Res. Commun. 312 (4): 1185–90. doi:10.1016/j.bbrc.2003.11.049. PMID 14651998.
- Ota T, Suzuki Y, Nishikawa T, et al. (2004). "Complete sequencing and characterization of 21,243 full-length human cDNAs". Nat. Genet. 36 (1): 40–5. doi:10.1038/ng1285. PMID 14702039.
- Ballif BA, Villén J, Beausoleil SA, et al. (2005). "Phosphoproteomic analysis of the developing mouse brain". Mol. Cell. Proteomics. 3 (11): 1093–101. doi:10.1074/mcp.M400085-MCP200. PMID 15345747.
- Collins JE, Wright CL, Edwards CA, et al. (2005). "A genome annotation-driven approach to cloning the human ORFeome". Genome Biol. 5 (10): R84. doi:10.1186/gb-2004-5-10-r84. PMC 545604. PMID 15461802.
- Gerhard DS, Wagner L, Feingold EA, et al. (2004). "The status, quality, and expansion of the NIH full-length cDNA project: the Mammalian Gene Collection (MGC)". Genome Res. 14 (10B): 2121–7. doi:10.1101/gr.2596504. PMC 528928. PMID 15489334.
- Andrei MA, Ingelfinger D, Heintzmann R, et al. (2005). "A role for eIF4E and eIF4E-transporter in targeting mRNPs to mammalian processing bodies". RNA. 11 (5): 717–27. doi:10.1261/rna.2340405. PMC 1370757. PMID 15840819.
- Ferraiuolo MA, Basak S, Dostie J, et al. (2005). "A role for the eIF4E-binding protein 4E-T in P-body formation and mRNA decay". J. Cell Biol. 170 (6): 913–24. doi:10.1083/jcb.200504039. PMC 2171455. PMID 16157702.
- Rual JF, Venkatesan K, Hao T, et al. (2005). "Towards a proteome-scale map of the human protein-protein interaction network". Nature. 437 (7062): 1173–8. doi:10.1038/nature04209. PMID 16189514.
- Wichroski MJ, Robb GB, Rana TM (2006). "Human retroviral host restriction factors APOBEC3G and APOBEC3F localize to mRNA processing bodies". PLoS Pathog. 2 (5): e41. doi:10.1371/journal.ppat.0020041. PMC 1458959. PMID 16699599.
- Lim J, Hao T, Shaw C, et al. (2006). "A protein-protein interaction network for human inherited ataxias and disorders of Purkinje cell degeneration". Cell. 125 (4): 801–14. doi:10.1016/j.cell.2006.03.032. PMID 16713569.
- Denoeud F, Kapranov P, Ucla C, et al. (2007). "Prominent use of distal 5' transcription start sites and discovery of a large number of additional exons in ENCODE regions". Genome Res. 17 (6): 746–59. doi:10.1101/gr.5660607. PMC 1891335. PMID 17567994.
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