Small nucleolar RNA SNORD37
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SNORD37 (also known as U37) is a non-coding RNA (ncRNA) molecule which functions in the modification of other small nuclear RNAs (snRNAs). This type of modifiying RNA is usually located in the nucleolus of the eukaryotic cell which is a major site of snRNA biogenesis. It is known as a small nucleolar RNA (snoRNA) and also often referred to as a guide RNA.
snoRNA U37 belongs to the C/D box class of snoRNAs which contain the conserved sequence motifs known as the C box (UGAUGA) and the D box (CUGA). Most of the members of the box C/D family function in directing site-specific 2'-O-methylation of substrate RNAs[1][2].
This snoRNA was originally identified by computational screening of vertebrate genomes for conserved C/D box motifs within intronic regions and expression experimentally verified by northern blotting [3]. The mouse orthologue was identified [4].
SNORD37 is predicted to guide the 2'O-ribose methylation of the 28S ribosomal RNA (rRNA) at residue A3697 [5].
[edit] References
- ^ Galardi, S; Fatica A, Bachi A, Scaloni A, Presutti C, Bozzoni I (2002). "Purified box C/D snoRNPs are able to reproduce site-specific 2'-O-methylation of target RNA in vitro". Mol Cell Biol 22: 6663–6668. doi: . PMID 12215523.
- ^ Kiss T (2002). "Small nucleolar RNAs: an abundant group of noncoding RNAs with diverse cellular functions". Cell 109 (2): 145–8. PMID 12007400.
- ^ Nicoloso M, Qu LH, Michot B, Bachellerie JP (1996). "Intron-encoded, antisense small nucleolar RNAs: the characterization of nine novel species points to their direct role as guides for the 2'-O-ribose methylation of rRNAs". J. Mol. Biol. 260 (2): 178–95. doi: . PMID 8764399.
- ^ Hüttenhofer A, Kiefmann M, Meier-Ewert S, et al (2001). "RNomics: an experimental approach that identifies 201 candidates for novel, small, non-messenger RNAs in mouse". EMBO J. 20 (11): 2943–53. doi: . PMID 11387227.
- ^ Lestrade, L; Weber MJ (2006). "snoRNA-LBME-db, a comprehensive database of human H/ACA and C/D box snoRNAs". Nucleic Acids Res. 34: D158–D162. doi: . PMID 16381836.