A 15-Base-Pair Element Activates the SPS4 Gene Midway through Sporulation in Saccharomyces cerevisiae
Open Access
- 1 July 1995
- journal article
- Published by Taylor & Francis in Molecular and Cellular Biology
- Vol. 15 (7) , 3934-3944
- https://doi.org/10.1128/mcb.15.7.3934
Abstract
Sporulation of the yeast Saccharomyces cerevisiae represents a simple developmental process in which the events of meiosis and spore wall formation are accompanied by the sequential activation of temporally distinct classes of genes. In this study, we have examined expression of the SPS4 gene, which belongs to a group of genes that is activated midway through sporulation. We mapped the upstream boundary of the regulatory region of SPS4 by monitoring the effect of sequential deletions of 5'-flanking sequence on expression of plasmid-borne versions of SPS4 introduced into a MATa/MAT alpha delta sps4/delta sps4 strain. This analysis indicated that the 5' boundary of the regulatory region was within 50 bp of the putative TATA box of the gene. By testing various oligonucleotides that spanned this boundary and the downstream sequence for their ability to activate expression of a heterologous promoter, we found that a 15-bp sequence sufficed to act as a sporulation-specific upstream activation sequence. This 15-bp fragment, designated UASSPS4, activated expression of a CYC1-lacZ reporter gene midway through sporulation and was equally active in both orientations. Extending the UAS fragment to include the adjacent 14-bp enhanced its activity 10-fold. We show that expression of SPS4 is regulated in a manner distinct from that of early meiotic genes: mutation of UME6 did not lead to vegetative expression of SPS4, and sporulation-specific expression was delayed by mutation of IME2. In vivo and in vitro assays suggested that a factor present in vegetative cells bind to the UASSPS4 element. We speculate that during sporulation this factor is modified to serve as an activator of the SPS4 gene or, alternatively, that it recruits an activator to the promoter.Keywords
This publication has 56 references indexed in Scilit:
- Regulatory mechanisms in meiosisCurrent Opinion in Cell Biology, 1993
- Improved method for high efficiency transformation of intact yeast cellsNucleic Acids Research, 1992
- The yeast RME1 gene encodes a putative zinc finger protein that is directly repressed by a1-alpha 2.Genes & Development, 1991
- The yeast MCK1 gene encodes a protein kinase homolog that activates early meiotic gene expression.Genes & Development, 1991
- Isolation of two developmentally regulated genes involved in spore wall maturation in Saccharomyces cerevisiae.Genes & Development, 1990
- Dual regulation of meiosis in yeastCell, 1990
- The HOP1 gene encodes a meiosis-specific component of yeast chromosomesCell, 1990
- Hsp26 is not required for growth at high temperatures, nor for thermotolerance, spore development, or germinationCell, 1986
- Activation of meiosis and sporulation by repression of the RME1 product in yeastNature, 1986
- A bacterial repressor protein or a yeast transcriptional terminator can block upstream activation of a yeast geneNature, 1984