STRUCTURE AND EXPRESSION OF NOVEL SPLICED LEADER RNA GENES IN CAENORHABDITIS-ELEGANS

被引:42
作者
ROSS, LH
FREEDMAN, JH
RUBIN, CS
机构
[1] School of the Environment, Duke University, Box 90328, Durham
关键词
D O I
10.1074/jbc.270.37.22066
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
Approximately 25% of Caenorhabditis elegans genes are organized as operons. Polycistronic transcripts are converted to monocistronic mRNAs by 3' cleavage/polyadenylation and 5' trans-splicing with untranslated, 5'-terminal exons called spliced leaders, (SLs). The 5' termini of mRNAs encoded by downstream genes in operons are accepters for greater than or equal to 7 recently discovered ''novel'' SLs and a classical SL (SL2). Diversity in SL exons is now partly explained by the discovery and characterization of five novel genes that encode C. elegans SL RNAs. These novel SL RNAs contain a 22- or 23-nucleotide SL followed by conserved splice donor and downstream sequences that are essential for catalysis of trans-splicing reactions. The SL3 alpha, SL4, and SL5 RNA genes are tightly clustered on chromosome III; their 114-nucleotide transcripts deliver three distinct SLs to mRNAs. The SL3 beta and SL3 gamma RNA genes are on chromosome I, but are not tightly linked. SL RNAs 3 alpha, 3 beta, and 3 gamma provide identical 5' leader exons, although their 3' sequences diverge. Transcription of SL 3-5 RNA genes appears to be driven by flanking DNA elements that are homologous with segments of promoters for the C. elegans SL2 RNA and small nuclear RNA genes. RNase protection assays demonstrated that novel SL RNAs are transcribed in vivo and accumulate in the poly(A(-)) RNA pool. SL3 exons are transferred to mRNAs as frequently as SL2 exons. In contrast, SL4 is appended to mRNAs 10% as frequently as SL3. The abundance of SL4 RNA increased 6-fold during postembryonic development, and the SL4 RNA gene promoter is active principally in hypodermal cells.
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页码:22066 / 22075
页数:10
相关论文
共 53 条
[1]   BASIC LOCAL ALIGNMENT SEARCH TOOL [J].
ALTSCHUL, SF ;
GISH, W ;
MILLER, W ;
MYERS, EW ;
LIPMAN, DJ .
JOURNAL OF MOLECULAR BIOLOGY, 1990, 215 (03) :403-410
[2]   PRESENCE OF THE CAENORHABDITIS-ELEGANS SPLICED LEADER ON DIFFERENT MESSENGER-RNAS AND IN DIFFERENT GENERA OF NEMATODES [J].
BEKTESH, S ;
VANDOREN, K ;
HIRSH, D .
GENES & DEVELOPMENT, 1988, 2 (10) :1277-1283
[3]   C-ELEGANS MESSENGER-RNAS ACQUIRE A SPLICED LEADER THROUGH A TRANS-SPLICING MECHANISM [J].
BEKTESH, SL ;
HIRSH, DI .
NUCLEIC ACIDS RESEARCH, 1988, 16 (12) :5692-5692
[4]   CIS AND TRANS MESSENGER-RNA SPLICING IN C-ELEGANS [J].
BLUMENTHAL, T ;
THOMAS, J .
TRENDS IN GENETICS, 1988, 4 (11) :305-308
[5]   TRANS SPLICING INVOLVES A NOVEL FORM OF SMALL NUCLEAR RIBONUCLEOPROTEIN-PARTICLES [J].
BRUZIK, JP ;
VANDOREN, K ;
HIRSH, D ;
STEITZ, JA .
NATURE, 1988, 335 (6190) :559-562
[6]   CONVERSION OF A TRANS-SPLICED C-ELEGANS GENE INTO A CONVENTIONAL GENE BY INTRODUCTION OF A SPLICE DONOR SITE [J].
CONRAD, R ;
LIOU, RF ;
BLUMENTHAL, T .
EMBO JOURNAL, 1993, 12 (03) :1249-1255
[7]   INSERTION OF PART OF AN INTRON INTO THE 5' UNTRANSLATED REGION OF A CAENORHABDITIS-ELEGANS GENE CONVERTS IT INTO A TRANS-SPLICED GENE [J].
CONRAD, R ;
THOMAS, J ;
SPIETH, J ;
BLUMENTHAL, T .
MOLECULAR AND CELLULAR BIOLOGY, 1991, 11 (04) :1921-1926
[8]   TOWARD A PHYSICAL MAP OF THE GENOME OF THE NEMATODE CAENORHABDITIS-ELEGANS [J].
COULSON, A ;
SULSTON, J ;
BRENNER, S ;
KARN, J .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1986, 83 (20) :7821-7825
[9]   YACS AND THE C-ELEGANS GENOME [J].
COULSON, A ;
KOZONO, Y ;
LUTTERBACH, B ;
SHOWNKEEN, R ;
SULSTON, J ;
WATERSTON, R .
BIOESSAYS, 1991, 13 (08) :413-417
[10]   REGULATORY MYOSIN LIGHT-CHAIN GENES OF CAENORHABDITIS-ELEGANS [J].
CUMMINS, C ;
ANDERSON, P .
MOLECULAR AND CELLULAR BIOLOGY, 1988, 8 (12) :5339-5349