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1.
Nucleic Acids Res ; 28(22): 4467-73, 2000 Nov 15.
Article in English | MEDLINE | ID: mdl-11071934

ABSTRACT

The 5'-cap structure of most spliceosomal small nuclear RNAs (snRNAs) and certain small nucleolar RNAs (snoRNAs) undergoes hypermethylation from a 7-methylguanosine to a 2,2, 7-trimethylguanosine structure. 5'-Cap hypermethylation of snRNAs is dependent upon a conserved sequence element known as the Sm site common to most snRNAs. Here we have performed a mutational analysis of U3 and U14 to determine the cis-acting sequences required for 5'-cap hypermethylation of Box C/D snoRNAs. We have found that both the conserved sequence elements Box C (termed C' in U3) and Box D are necessary for cap hypermethylation. Furthermore, the terminal stem structure that is formed by sequences that flank Box C (C' in U3) and Box D is also required. However, mutation of other conserved sequences has no effect on hypermethylation of the cap. Finally, the analysis of fragments of U3 and U14 RNAs indicates that the Box C/D motif, including Box C (C' in U3), Box D and the terminal stem, is capable of directing cap hypermethylation. Thus, the Box C/D motif, which is important for snoRNA processing, stability, nuclear retention, protein binding, nucleolar localization and function, is also necessary and sufficient for cap hypermethylation of these RNAs.


Subject(s)
DNA Methylation , RNA Caps/metabolism , RNA, Small Nucleolar/metabolism , Regulatory Sequences, Nucleic Acid , Animals , Cell Nucleus/metabolism , Female , Models, Molecular , Mutation , Oocytes , RNA Caps/genetics , RNA Stability , RNA, Small Nucleolar/chemistry , RNA, Small Nucleolar/genetics , Xenopus
2.
Nucleic Acids Res ; 28(18): 3462-71, 2000 Sep 15.
Article in English | MEDLINE | ID: mdl-10982864

ABSTRACT

U3 small nucleolar RNA (snoRNA) is a member of the Box C/D family of snoRNAs which functions in ribosomal RNA processing. U3-55k is a protein that has been found to interact with U3 but not other members of the Box C/D snoRNA family. We have found that interaction of the U3-55k protein with U3 RNA in vivo is mediated by the conserved Box B/C motif which is unique to U3 snoRNA. Mutation of Box B and Box C, but not of other conserved sequence elements, disrupted interaction of U3-55k with U3 RNA. Furthermore, a fragment of U3 containing only these two conserved elements was bound by U3-55k in vivo. RNA binding assays performed in vitro indicate that Box C may be the primary determinant of the interaction. We have cloned the cDNA encoding the Xenopus laevis U3-55k protein and find strong homology to the human sequence, including six WD repeats. Deletion of WD repeats or sequences near the C-terminus of U3-55k resulted in loss of association with U3 RNA and also loss of localization of U3-55k to the nucleolus, suggesting that protein-protein interactions contribute to the localization and RNA binding of U3-55k in vivo.


Subject(s)
RNA, Small Nucleolar/metabolism , Ribonucleoproteins, Small Nucleolar/metabolism , Amino Acid Motifs , Amino Acid Sequence , Animals , Cloning, Molecular , Humans , Molecular Sequence Data , Protein Binding , RNA, Small Nucleolar/chemistry , Recombinant Proteins/genetics , Recombinant Proteins/metabolism , Repetitive Sequences, Nucleic Acid , Ribonucleoproteins, Small Nucleolar/chemistry , Sequence Homology, Amino Acid , Xenopus laevis
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