The effect of changing the distance between the TATA-box and Cap site by up to three base pairs on the selection of the transcilptlonal start site of a doned eukaryotic genein vitroandin vitro
- 1 January 1986
- journal article
- Published by Oxford University Press (OUP) in Nucleic Acids Research
- Vol. 14 (6) , 2429-2442
- https://doi.org/10.1093/nar/14.6.2429
Abstract
We have studied how small changes in the distance between the TATA-box and cap site affect transcription of a eukaryotic gene in vitro and in vivo. The trout protamine gene TPG-3 [Gregory et al. (1982) Nucl. Acids Res. 10, 7581-7592] is a good model for such a study as it has (i) a consensus TATA-box 32 base pairs (bp) upstream from an A-residue which is the natural cap site (designated +1) (ii) two further A-residues at -5 and +5, providing alternative transcriptional start sites which are in significantly different sequence environments and (iii) a unique AvaII restriction site immediately downstream from the TATA-box which is ideal for the insertion or deletion of up to 3bp. Transcripts of the wild type and mutant genes were generated in vitro using a HeLa whole cell extract or 'in vivo' by transient expression following their transfection into HeLa cells. These 'spacer' mutations did not affect the efficiency of transcription of the gene in vitro but they did affect the selection of transcriptional start site both in vitro and 'in vivo'. Analysis of 5'-ends by S1-mapping and primer extension showed that the A-residue(s) selected are those which, by insertion or deletion, come to lie on the same face of the DNA double helix as the TATA-box, although the DNA sequence in the immediate vicinity of the potential start sites influences their utilisation. Comparison of the TPG-3 wild type transcripts in these experimental systems with natural mRNA suggests that cap site selection is more stringent in the developing trout testis.Keywords
This publication has 27 references indexed in Scilit:
- Three regions upstream from the cap site are required for efficient and accurate transcription of the rabbit β-globin gene in mouse 3T6 cellsCell, 1983
- Formation of stable preinitiation complexes between eukaryotic class B transcription factors and promoter sequencesNature, 1983
- DNA sequences necessary for transcription of the rabbit β-globin gene in vivoNature, 1982
- Inhibition of SV40 replication in simian cells by specific pBR322 DNA sequencesNature, 1981
- Localization of DNA sequences necessary for transcription of the rabbit β-globin gene in vitroCell, 1981
- In vivo sequence requirements of the SV40 early promoter regionNature, 1981
- Definition of a novel promoter for the major adenovirus-associated virus mRNACell, 1980
- Promoter Sequences of Eukaryotic Protein-Coding GenesScience, 1980
- The chromosomal arrangement of human α-like globin genes: Sequence homology and α-globin gene deletionsCell, 1980
- Trans-complementable copy-number mutants of plasmid ColE1Nature, 1980