UTP18
From Wikipedia, the free encyclopedia
UTP18, small subunit (SSU) processome component, homolog (yeast)
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Identifiers | ||||||||||||||
Symbol(s) | UTP18; CGI-48; WDR50 | |||||||||||||
External IDs | MGI: 1923402 HomoloGene: 41087 | |||||||||||||
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RNA expression pattern | ||||||||||||||
Orthologs | ||||||||||||||
Human | Mouse | |||||||||||||
Entrez | 51096 | 217109 | ||||||||||||
Ensembl | ENSG00000011260 | ENSMUSG00000054079 | ||||||||||||
Uniprot | Q9Y5J1 | Q3TJX6 | ||||||||||||
Refseq | NM_016001 (mRNA) NP_057085 (protein) |
NM_001013375 (mRNA) NP_001013393 (protein) |
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Location | Chr 17: 46.69 - 46.73 Mb | Chr 11: 93.68 - 93.7 Mb | ||||||||||||
Pubmed search | [1] | [2] |
UTP18, small subunit (SSU) processome component, homolog (yeast), also known as UTP18, is a human gene.[1]
[edit] References
[edit] Further reading
- Andersson B, Wentland MA, Ricafrente JY, et al. (1996). "A "double adaptor" method for improved shotgun library construction.". Anal. Biochem. 236 (1): 107–13. doi: . PMID 8619474.
- Yu W, Andersson B, Worley KC, et al. (1997). "Large-scale concatenation cDNA sequencing.". Genome Res. 7 (4): 353–8. PMID 9110174.
- Lai CH, Chou CY, Ch'ang LY, et al. (2000). "Identification of novel human genes evolutionarily conserved in Caenorhabditis elegans by comparative proteomics.". Genome Res. 10 (5): 703–13. PMID 10810093.
- Scherl A, Couté Y, Déon C, et al. (2003). "Functional proteomic analysis of human nucleolus.". Mol. Biol. Cell 13 (11): 4100–9. doi: . PMID 12429849.
- 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: . PMID 12477932.
- Yokoyama A, Wang Z, Wysocka J, et al. (2004). "Leukemia proto-oncoprotein MLL forms a SET1-like histone methyltransferase complex with menin to regulate Hox gene expression.". Mol. Cell. Biol. 24 (13): 5639–49. doi: . PMID 15199122.
- Beausoleil SA, Jedrychowski M, Schwartz D, et al. (2004). "Large-scale characterization of HeLa cell nuclear phosphoproteins.". Proc. Natl. Acad. Sci. U.S.A. 101 (33): 12130–5. doi: . PMID 15302935.
- 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: . PMID 15489334.
- Bernstein KA, Gallagher JE, Mitchell BM, et al. (2005). "The small-subunit processome is a ribosome assembly intermediate.". Eukaryotic Cell 3 (6): 1619–26. doi: . PMID 15590835.
- Beausoleil SA, Villén J, Gerber SA, et al. (2006). "A probability-based approach for high-throughput protein phosphorylation analysis and site localization.". Nat. Biotechnol. 24 (10): 1285–92. doi: . PMID 16964243.
- Olsen JV, Blagoev B, Gnad F, et al. (2006). "Global, in vivo, and site-specific phosphorylation dynamics in signaling networks.". Cell 127 (3): 635–48. doi: . PMID 17081983.