Cys2His2 zinc fingers are eukaryotic DNA-binding motifs, capable of distinguishing different DNA sequences, and are suitable for engineering artificial transcription factors. In this work, we used the budding yeast Saccharomyces cerevisiae to study the ability of tailor-made zinc finger proteins to activate the expression of the FLO11 gene, with phenotypic consequences. Two three-finger peptides were identified, recognizing sites from the 5' UTR of the FLO11 gene with nanomolar DNA-binding affinity. The three-finger domains and their combined six-finger motif, recognizing an 18-bp site, were fused to the activation domain of VP16 or VP64. These transcription factor constructs retained their DNA-binding ability, with the six-finger ones bein...
AbstractThe FLO gene family of Saccharomyces cerevisiae includes an expressed gene, FLO11, and a set...
Transcription factor IIIA (TFIIIA) binds to the 5 S rRNA gene through its zinc finger domain and dir...
While transcription factors are a crucial part of gene regulatory networks, their role in evolutiona...
We have developed a method in which randomized libraries of zinc finger-containing artificial transc...
The binding of transcription factor (TF) IIIA to the internal control region of the 5 S RNA gene is ...
We have developed a strategy for the identification of peptides able to functionally replace a zinc ...
We have developed a method with prokaryotic organisms that uses randomized libraries of zinc finger-...
Recent progress in the design and selection of novel zinc finger proteins with desired DNA binding s...
We describe methods for generating artificial transcription factors capable of up- or downregulating...
Eukaryotic transcription factors (TFs) perform complex and combinatorial functions within transcript...
Randomized ZFP-TF libraries could induce a specific phenotype without detailed knowledge about the p...
Randomized ZFP-TF libraries could induce a specific phenotype without detailed knowledge about the p...
AbstractIt has long been the goal of molecular biologists to design DNA-binding proteins for the spe...
Transcription factor IIIA (TFIIIA) binds to the 5 S rRNA gene through its zinc finger domain and dir...
Zinc-finger proteins of the Cys2-His2 type represent a class of malleable DNA-binding proteins that ...
AbstractThe FLO gene family of Saccharomyces cerevisiae includes an expressed gene, FLO11, and a set...
Transcription factor IIIA (TFIIIA) binds to the 5 S rRNA gene through its zinc finger domain and dir...
While transcription factors are a crucial part of gene regulatory networks, their role in evolutiona...
We have developed a method in which randomized libraries of zinc finger-containing artificial transc...
The binding of transcription factor (TF) IIIA to the internal control region of the 5 S RNA gene is ...
We have developed a strategy for the identification of peptides able to functionally replace a zinc ...
We have developed a method with prokaryotic organisms that uses randomized libraries of zinc finger-...
Recent progress in the design and selection of novel zinc finger proteins with desired DNA binding s...
We describe methods for generating artificial transcription factors capable of up- or downregulating...
Eukaryotic transcription factors (TFs) perform complex and combinatorial functions within transcript...
Randomized ZFP-TF libraries could induce a specific phenotype without detailed knowledge about the p...
Randomized ZFP-TF libraries could induce a specific phenotype without detailed knowledge about the p...
AbstractIt has long been the goal of molecular biologists to design DNA-binding proteins for the spe...
Transcription factor IIIA (TFIIIA) binds to the 5 S rRNA gene through its zinc finger domain and dir...
Zinc-finger proteins of the Cys2-His2 type represent a class of malleable DNA-binding proteins that ...
AbstractThe FLO gene family of Saccharomyces cerevisiae includes an expressed gene, FLO11, and a set...
Transcription factor IIIA (TFIIIA) binds to the 5 S rRNA gene through its zinc finger domain and dir...
While transcription factors are a crucial part of gene regulatory networks, their role in evolutiona...