An RNA polymerase I promoter located in the CHO and mouse ribosomal DNA spacers: functional analysis and factor and sequence requirements.
Open Access
- 1 April 1989
- journal article
- research article
- Published by Taylor & Francis in Molecular and Cellular Biology
- Vol. 9 (4) , 1513-1525
- https://doi.org/10.1128/mcb.9.4.1513
Abstract
We report results of experiments in which we demonstrated the existence of a polymerase I promoter within the ribosomal DNA spacer upstream from the rRNA initiation site in Chinese hamsters and mice. Transcription of the CHO spacer promoter was achieved by the same protein factors, C and D, that catalyzed transcription of the gene promoter, and these factors bound stably to the CHO spacer promoter in a preinitiation complex, just as they did to the gene promoter. In contrast to the CHO spacer promoter, which was transcribed in vitro nearly as efficiently as the gene promoter, the mouse spacer promoter was far less active; this low activity was attributable to the fact that the mouse spacer promoter bound factor D inefficiently. It is striking that the active CHO spacer promoter violated the otherwise universal rule that metazoan RNA polymerase I promoters all have a G residue at position -16. Sequence comparisons also revealed a great similarity between the CHO and mouse spacer promoter regions, yet there was much less similarity between the flanking sequences. There was also only limited homology between the spacer and gene promoter regions, but despite this the two kinds of initiation regions were organized similarly, both consisting of an essential core promoter domain and a stimulatory domain that extended upstream to approximately residue -135. Evolutionary considerations argue strongly that the presence of ribosomal DNA spacer promoters offers a significant selective advantage.This publication has 46 references indexed in Scilit:
- The promoter-proximal rDNA terminator augments initiation by preventing disruption of the stable transcription complex caused by polymerase read-in.Genes & Development, 1989
- Transcription of mouse rDNA is regulated by an activated subform of RNA polymerase ICell, 1987
- A complex array of sequences enhances ribosomal transcription in Xenopus laevisJournal of Molecular Biology, 1987
- Spacer promoters are essential for efficient enhancement of X. laevis ribosomal transcriptionCell, 1986
- Characterization of the region around the start point of transcription of ribosomal RNA in the Chinese hamsterGene, 1986
- Transcription of mouse rDNA terminates downstream of the 3′ end of 28S RNA and involves interaction of factors with repeated sequences in the 3′ spacerCell, 1985
- The major promoter element of rRNA transcription in yeast lies 2 kb upstreamCell, 1984
- A transcriptional function for repetitive ribosomal spacers in Xenopus?Nature, 1983
- Analysis of transcriptional regulatory signals of the HSV thymidine kinase gene: Identification of an upstream control regionCell, 1981
- Isolation of biologically active ribonucleic acid from sources enriched in ribonucleaseBiochemistry, 1979