The Zap1 transcription factor of Saccharomyces cerevisiae plays a central role in zinc homeostasis by controlling the expression of genes involved in zinc metabolism. Zap1 is active in zinc-limited cells and repressed in replete cells. At the transcriptional level, Zap1 controls its own expression via positive autoregulation. In addition, Zap1's two activation domains are regulated independently of each other by zinc binding directly to those regions and repressing activation function. In this report, we show that Zap1 DNA binding is also inhibited by zinc. DMS footprinting showed that Zap1 target gene promoter occupancy is regulated with or without transcriptional autoregulation. These results were confirmed using chromatin immunoprecipita...
<div><p>Zinc is an essential nutrient because it is a required cofactor for many enzymes and transcr...
Zinc is an essential nutrient because it is a required cofactor for many enzymes and transcription f...
Many genes with crucial roles in zinc homeostasis in mammals respond to fluctuating zinc supply thro...
The Zap1 transcription factor of Saccharomyces cerevisiae plays a central role in zinc homeostasis b...
Abstract Background The Zap1 transcription factor is a central player in the response of yeast to ch...
<p><b>A</b>) Diagram of wild-type Zap1 and Zap1<sup>Δ17-700</sup>. The latter allele retains only a ...
<p><b>A</b>) Wild-type (DY1457) or <i>zap1Δ</i> (ZHY6) cells transformed with either pZap1<sup>WT</s...
In Schizosaccharomyces pombe, the expression of the zrt1 zinc uptake gene is tightly regulated by zi...
<p>ZAP1 is inactivated by zinc and activates transcription of the transporters ZRT1 and ZRT2.</p
<p><b>A</b>) Wild-type (DY1457) or ZHY6 <i>zap1Δ</i> cells transformed with pGEV and pZap1<sup>WT</s...
<div><p>Zinc homeostasis is essential for fungal growth, as this metal is a critical structural comp...
Zinc is an essential element needed by all living cells. Its important role within cells is to stabi...
Zinc homeostasis is essential for fungal growth, as this metal is a critical structural component of...
Item does not contain fulltextMany genes with crucial roles in zinc homeostasis in mammals respond t...
Zinc homeostasis is essential for fungal growth, as this metal is a critical structural component of...
<div><p>Zinc is an essential nutrient because it is a required cofactor for many enzymes and transcr...
Zinc is an essential nutrient because it is a required cofactor for many enzymes and transcription f...
Many genes with crucial roles in zinc homeostasis in mammals respond to fluctuating zinc supply thro...
The Zap1 transcription factor of Saccharomyces cerevisiae plays a central role in zinc homeostasis b...
Abstract Background The Zap1 transcription factor is a central player in the response of yeast to ch...
<p><b>A</b>) Diagram of wild-type Zap1 and Zap1<sup>Δ17-700</sup>. The latter allele retains only a ...
<p><b>A</b>) Wild-type (DY1457) or <i>zap1Δ</i> (ZHY6) cells transformed with either pZap1<sup>WT</s...
In Schizosaccharomyces pombe, the expression of the zrt1 zinc uptake gene is tightly regulated by zi...
<p>ZAP1 is inactivated by zinc and activates transcription of the transporters ZRT1 and ZRT2.</p
<p><b>A</b>) Wild-type (DY1457) or ZHY6 <i>zap1Δ</i> cells transformed with pGEV and pZap1<sup>WT</s...
<div><p>Zinc homeostasis is essential for fungal growth, as this metal is a critical structural comp...
Zinc is an essential element needed by all living cells. Its important role within cells is to stabi...
Zinc homeostasis is essential for fungal growth, as this metal is a critical structural component of...
Item does not contain fulltextMany genes with crucial roles in zinc homeostasis in mammals respond t...
Zinc homeostasis is essential for fungal growth, as this metal is a critical structural component of...
<div><p>Zinc is an essential nutrient because it is a required cofactor for many enzymes and transcr...
Zinc is an essential nutrient because it is a required cofactor for many enzymes and transcription f...
Many genes with crucial roles in zinc homeostasis in mammals respond to fluctuating zinc supply thro...