TFIIIC-independent in vitro transcription of yeast tRNA genes

被引:55
作者
Dieci, G [1 ]
Percudani, R [1 ]
Giuliodori, S [1 ]
Bottarelli, L [1 ]
Ottonello, S [1 ]
机构
[1] Univ Parma, Inst Biochem Sci, I-43100 Parma, Italy
关键词
tRNA genes; TFIIIC; TFIIIB; TATA box; yeast;
D O I
10.1006/jmbi.2000.3783
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
The most peculiar transcriptional property of eukaryotic tRNA genes, as well as of other genes sen ed by RNA polymerase III, is their complete dependence on the intragenic interaction platform provided by transcription factor IIIC (TFIIIC) for the productive assembly of the TBP-containing initiation factor TFIIIB. The sole exception, in yeast, is the U6 RNA gene, which is able to exploit a TATAAATA element, 30 bp upstream of the transcription start site, for the TFIIIC-independent assembly of TFIIIB. To find out whether this extragenic core promoter organization and autonomous TFIIIB assembly capacity are unique features of the U6 gene or also apply to other genes transcribed by RNA polymerase III, we scanned the 5'-flanking; regions (up to position -100) of the entire tRNA gene set of Saccharomyces cerevisae searching for U6-like TATA motifs. Four tRNA genes harboring such a sequence motif around position -30 were identified and found to be transcribed in vitro by a minimal system only composed of TFIIIB and RNA polymerase III. Ln this system, start site selection is not at all affected by the absence of TFIIIC, which, when added, significantly stimulates transcription by determining an increase in the number, rather than in the efficiency of utilization, of productive initiation complexes. A specific TBP-TATA element interaction is absolutely required for TFIIIC-independent transcription, but the nearby sequence context also contributes to the efficiency of autonomous TFIIIB assembly. The existence of a TFIIIB assembly pathway leading to the faithful transcription of natural eukaryotic tRNA genes in the absence of TFIIIC provides novel insights into the functional flexibility of the eukaryotic tRNA gene transcription machinery and on its evolution from an ancestral RNA polymerase III system relying on upstream, TATA-centered control elements. (C) 2000 Academic Press.
引用
收藏
页码:601 / 613
页数:13
相关论文
共 65 条
[1]   GENE SIZE DIFFERENTIALLY AFFECTS THE BINDING OF YEAST TRANSCRIPTION FACTOR-TAU TO 2 INTRAGENIC REGIONS [J].
BAKER, RE ;
CAMIER, S ;
SENTENAC, A ;
HALL, BD .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1987, 84 (24) :8768-8772
[2]   TRANSCRIPTION OF A YEAST U6 SNRNA GENE REQUIRES A POLYMERASE-III PROMOTER ELEMENT IN A NOVEL POSITION [J].
BROW, DA ;
GUTHRIE, C .
GENES & DEVELOPMENT, 1990, 4 (08) :1345-1356
[3]   A SUPPRESSOR OF TBP MUTATIONS ENCODES AN RNA POLYMERASE-III TRANSCRIPTION FACTOR WITH HOMOLOGY TO TFIIB [J].
BURATOWSKI, S ;
ZHOU, H .
CELL, 1992, 71 (02) :221-230
[4]   BASAL PROMOTER AND ENHANCER ELEMENT OF YEAST U6 SNRNA GENE [J].
BURNOL, AF ;
MARGOTTIN, F ;
SCHULTZ, P ;
MARSOLIER, MC ;
OUDET, P ;
SENTENAC, A .
JOURNAL OF MOLECULAR BIOLOGY, 1993, 233 (04) :644-658
[5]   TFIIIC RELIEVES REPRESSION OF U6 SNRNA TRANSCRIPTION BY CHROMATIN [J].
BURNOL, AF ;
MARGOTTIN, F ;
HUET, J ;
ALMOUZNI, G ;
PRIOLEAU, MN ;
MECHALI, M ;
SENTENAC, A .
NATURE, 1993, 362 (6419) :475-477
[6]  
Burton N, 1991, Protein Expr Purif, V2, P432, DOI 10.1016/1046-5928(91)90105-R
[7]   TRANSCRIPTION OF THE XENOPUS-LAEVIS SELENOCYSTEINE TRANSFER RNA(SER)SEC GENE - A SYSTEM THAT COMBINES AN INTERNAL B BOX AND UPSTREAM ELEMENTS ALSO FOUND IN U6 SNRNA GENES [J].
CARBON, P ;
KROL, A .
EMBO JOURNAL, 1991, 10 (03) :599-606
[8]   The yeast RNA polymerase III transcription machinery:: A paradigm for eukaryotic gene activation [J].
Chédin, S ;
Ferri, ML ;
Peyroche, G ;
Andrau, JC ;
Jourdain, S ;
Lefebvre, O ;
Werner, M ;
Carles, C ;
Sentenac, A .
COLD SPRING HARBOR SYMPOSIA ON QUANTITATIVE BIOLOGY, 1998, 63 :381-389
[9]  
CHOISNE N, 1997, PLANT MOL BIOL, V36, P113
[10]   A YEAST TFIIB-RELATED FACTOR INVOLVED IN RNA POLYMERASE-III TRANSCRIPTION [J].
COLBERT, T ;
HAHN, S .
GENES & DEVELOPMENT, 1992, 6 (10) :1940-1949