Abstract
Gene activation in eukaryotes is inherently combinatorial depending on cooperation between different transcription factors. An example where this cooperation seems to be directly exploited for regulation is the Bas1p/Bas2p couple in yeast. Bas1p is a Myb-related transcription factor that acts together with the homeodomain-related Bas2p (Pho2p) to regulate purine and histidine biosynthesis genes in response to extracellular purine limitation. We show that fusion of the two factors abolished adenine repression, suggesting that what is regulated by adenine is the Bas1p-Bas2p interaction. Analysis of Bas1p deletions revealed a critical domain (Bas1p interaction and regulatory domain, BIRD) acting in two-hybrid assays as an adenine-dependent Bas1p-Bas2p interaction domain. BIRD had a dual function, as an internal repressor of a centrally located Bas1p transactivation domain on the ADE1 promoter and as a Bas2p-dependent activator on the HIS4 promoter. This promoter-dependent behavior reflected a differential binding to the two promoters in vivo. On ADE1 Bas1p bound the promoter efficiently by itself, but required adenine limitation and Bas2p interaction through BIRD for derepression. On HIS4 efficient promoter binding and derepression required both factors and adenine limitation. We propose a promoter-dependent model for adenine regulation in yeast based on controlled Bas1p-Bas2p interactions through BIRD and exploited differentially by the two promoters.
MeSH Terms
Adenine/pharmacology
Alcohol Oxidoreductases
Aminohydrolases
Binding Sites/genetics
DNA, Recombinant
Fungal Proteins/genetics,metabolism
Gene Expression Regulation/drug effects
Homeodomain Proteins
Lac Operon/genetics
Oncogene Proteins v-myb/genetics,metabolism
Peptide Synthases/genetics,metabolism
Plasmids/genetics
Promoter Regions, Genetic
Protein Binding
Pyrophosphatases
Recombinant Fusion Proteins/drug effects,genetics,metabolism
Saccharomyces cerevisiae/drug effects,genetics
Saccharomyces cerevisiae Proteins
Sequence Deletion
Signal Transduction/physiology
Trans-Activators/genetics,metabolism
Transcription Factors/genetics,metabolism
Transcriptional Activation
Two-Hybrid System Techniques
Chemicals
BAS1 protein, S cerevisiae
DNA, Recombinant
Fungal Proteins
Homeodomain Proteins
Oncogene Proteins v-myb
PHO2 protein, S cerevisiae
Recombinant Fusion Proteins
Saccharomyces cerevisiae Proteins
Trans-Activators
Transcription Factors
Alcohol Oxidoreductases
HIS4 protein, S cerevisiae
Aminohydrolases
Pyrophosphatases
Peptide Synthases
phosphoribosylaminoimidazole-succinocarboxamide synthetase
Adenine
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Pinson B
Department of Biochemistry, University of Oslo, PO Box 1041, Blindern, N-0316 Oslo 3, Norway.
Kongsrud T L
Ording E
Johansen L
Daignan-Fornier B
Gabrielsen O S
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