DIFFERENT FORMS OF U15 SNORNA ARE ENCODED IN THE INTRONS OF THE RIBOSOMAL-PROTEIN S1 GENE OF XENOPUS-LAEVIS

被引:27
作者
PELLIZZONI, L
CROSIO, C
CAMPIONI, N
LORENI, F
PIERANDREIAMALDI, P
机构
[1] CNR,IST BIOL CELLULARE,I-00137 ROME,ITALY
[2] UNIV ROMA TOR VERGATA,DIPARTIMENTO BIOL,I-00133 ROME,ITALY
关键词
D O I
10.1093/nar/22.22.4607
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Recent cloning and sequencing of one of the two Xenopus gene copies (S1b) coding for the ribosomal protein S1 has revealed that its introns III, V and VI carry a region of about 150 nt that shares an identity of 60%. We show here the presence in Xenopus oocytes and cultured cells of a 143 - 147 nt long RNA species encoded by these three repeated sequences on the same strand as the S1 mRNA and by at least one repeat present in the S1 a copy of the r-protein gene. We identify these RNAs as forms of the small nucleolar RNA U15 (U15 snoRNA) because of their sequence homology with an already described human U15 RNA encoded in the first intron of the human r-protein S3 gene, which is homologous to Xenopus S1. Comparison of the various Xenopus and human U15 RNA forms shows a very high conservation in some regions, but considerable divergence in others. In particular the most conserved sequences include two box C and two box D motifs, typical of most snoRNAs interacting with the nucleolar protein fibrillarin. Adjacent to the two D boxes there are two sequences, 9 and 10 nt in length, which are perfectly complementary to an evolutionary conserved sequence of the 28S rRNA. Modeling the possible secondary structure of Xenopus and human U15 RNAs reveals that, in spite of the noticeable sequence diversity, a high structural conservation in some cases may be maintained by compensatory mutations. We show also that the different Xenopus U15 RNA forms are expressed at comparable levels, localized in the nucleoli and produced by processing of the intronic sequences, as recently described for other snoRNAs.
引用
收藏
页码:4607 / 4613
页数:7
相关论文
共 24 条
[1]   EXPRESSION OF RIBOSOMAL-PROTEIN GENES AND REGULATION OF RIBOSOME BIOSYNTHESIS IN XENOPUS DEVELOPMENT [J].
AMALDI, F ;
BOZZONI, I ;
BECCARI, E ;
PIERANDREIAMALDI, P .
TRENDS IN BIOCHEMICAL SCIENCES, 1989, 14 (05) :175-178
[2]   ALBUMIN PHYLOGENY FOR CLAWED FROGS (XENOPUS) [J].
BISBEE, CA ;
BAKER, MA ;
WILSON, AC ;
HADJIAZIMI, I ;
FISCHBERG, M .
SCIENCE, 1977, 195 (4280) :785-787
[3]   EXPRESSION OF 2 XENOPUS-LAEVIS RIBOSOMAL-PROTEIN GENES IN INJECTED FROG OOCYTES - A SPECIFIC SPLICING BLOCK INTERFERES WITH THE L1 RNA MATURATION [J].
BOZZONI, I ;
FRAGAPANE, P ;
ANNESI, F ;
PIERANDREIAMALDI, P ;
AMALDI, F ;
BECCARI, E .
JOURNAL OF MOLECULAR BIOLOGY, 1984, 180 (04) :987-1005
[4]   U17(XS8), A SMALL NUCLEOLAR RNA WITH A 12 NT COMPLEMENTARITY TO 18S RIBOSOMAL-RNA AND CODED BY A SEQUENCE REPEATED IN THE 6 INTRONS OF XENOPUS-LAEVIS RIBOSOMAL PROTEIN-S8 GENE [J].
CECCONI, F ;
MARIOTTINI, P ;
LORENI, F ;
PIERANDREIAMALDI, P ;
CAMPIONI, N ;
AMALDI, F .
NUCLEIC ACIDS RESEARCH, 1994, 22 (05) :732-741
[6]   A NOVEL SMALL NUCLEOLAR RNA (U16) IS ENCODED INSIDE A RIBOSOMAL-PROTEIN INTRON AND ORIGINATES BY PROCESSING OF THE PREMESSENGER RNA [J].
FRAGAPANE, P ;
PRISLEI, S ;
MICHIENZI, A ;
CAFFARELLI, E ;
BOZZONI, I .
EMBO JOURNAL, 1993, 12 (07) :2921-2928
[7]  
GURDON JB, 1976, CONTROL GENE EXPRESS, P116
[8]   RNA-B IS THE MAJOR NUCLEOLAR TRIMETHYLGUANOSINE-CAPPED SMALL NUCLEAR-RNA ASSOCIATED WITH FIBRILLARIN AND PRE-RIBOSOMAL-RNAS IN TRYPANOSOMA-BRUCEI [J].
HARTSHORNE, T ;
AGABIAN, N .
MOLECULAR AND CELLULAR BIOLOGY, 1993, 13 (01) :144-154
[9]   THE YEAST HOMOLOG OF U3 SNRNA [J].
HUGHES, JMX ;
KONINGS, DAM ;
CESARENI, G .
EMBO JOURNAL, 1987, 6 (07) :2145-2155
[10]   IDENTIFICATION OF ESSENTIAL ELEMENTS IN U14 RNA OF SACCHAROMYCES-CEREVISIAE [J].
JARMOLOWSKI, A ;
ZAGORSKI, J ;
LI, HV ;
FOURNIER, MJ .
EMBO JOURNAL, 1990, 9 (13) :4503-4509