AbstractUsing two synthetic oligonucleotides, we have constructed a new gene containing three zinc finger motifs of the Cys2-His2 type. We named this artificial gene `Mago'. The Mago nucleotide triplets encoding the amino acid positions, described to be crucial for DNA binding specificity, have been chosen on the basis of the proposed recognition `code' that relates the zinc finger's primary structure to the DNA binding target. Here we demonstrate that Mago protein specifically binds the `code' DNA target, with a dissociation constant (Kd) comparable to the Kd of the well known Zif268 protein with its binding site. Moreover, we show that the deduced Mago `code' and the `experimental' selected DNA binding sites are almost identical, differin...
Individual zinc finger (ZF) domains that recognize DNA triplets with high specificity and affinity c...
AbstractEngineered transcription factors and endonucleases based on designed Cys2His2 zinc finger do...
Recent progress in the design and selection of novel zinc finger proteins with desired DNA binding s...
Using two synthetic oligonucleotides, we have constructed a new gene containing three zinc finger mo...
AbstractUsing two synthetic oligonucleotides, we have constructed a new gene containing three zinc f...
AbstractWe developed a rational scheme for designing DNA binding proteins. The scheme was applied fo...
Zinc fingers of the CYs 2His 2 class comprise one of the largest families of eukaryotic DNA-binding ...
Structure-based design was used to link zinc finger peptides and make poly-finger proteins that have...
AbstractBackground: Zinc-finger proteins of the Cys2His2 type constitute an important family of DNA-...
We present a quantitative, theoretical analysis of the recognition mechanisms used by two zinc finge...
Zinc-finger proteins of the Cys2-His2 type represent a class of malleable DNA-binding proteins that ...
AbstractBy substituting non conserved amino acids present in the postulated α-helical region of zinc...
AbstractWe developed a rapid method to determine DNA-binding sites for putative DNA-binding proteins...
Cys2-His2 zinc fingers constitute one of the largest classes of DNA-binding domains in the human gen...
ZNF191(243-368) is the C-terminal region of ZNF191 which contains a putative DNA-binding domain of f...
Individual zinc finger (ZF) domains that recognize DNA triplets with high specificity and affinity c...
AbstractEngineered transcription factors and endonucleases based on designed Cys2His2 zinc finger do...
Recent progress in the design and selection of novel zinc finger proteins with desired DNA binding s...
Using two synthetic oligonucleotides, we have constructed a new gene containing three zinc finger mo...
AbstractUsing two synthetic oligonucleotides, we have constructed a new gene containing three zinc f...
AbstractWe developed a rational scheme for designing DNA binding proteins. The scheme was applied fo...
Zinc fingers of the CYs 2His 2 class comprise one of the largest families of eukaryotic DNA-binding ...
Structure-based design was used to link zinc finger peptides and make poly-finger proteins that have...
AbstractBackground: Zinc-finger proteins of the Cys2His2 type constitute an important family of DNA-...
We present a quantitative, theoretical analysis of the recognition mechanisms used by two zinc finge...
Zinc-finger proteins of the Cys2-His2 type represent a class of malleable DNA-binding proteins that ...
AbstractBy substituting non conserved amino acids present in the postulated α-helical region of zinc...
AbstractWe developed a rapid method to determine DNA-binding sites for putative DNA-binding proteins...
Cys2-His2 zinc fingers constitute one of the largest classes of DNA-binding domains in the human gen...
ZNF191(243-368) is the C-terminal region of ZNF191 which contains a putative DNA-binding domain of f...
Individual zinc finger (ZF) domains that recognize DNA triplets with high specificity and affinity c...
AbstractEngineered transcription factors and endonucleases based on designed Cys2His2 zinc finger do...
Recent progress in the design and selection of novel zinc finger proteins with desired DNA binding s...