AbstractWe developed a rational scheme for designing DNA binding proteins. The scheme was applied for a zinc finger protein and the designed sequences were experimentally characterized with high DNA sequence specificity. Starting with the backbone of a known finger structure, we initially calculated amino acid sequences compatible with the expected structure and the secondary structures of the designed fingers were then experimentally confirmed. The DNA-binding function was added to the designed finger by reconsidering a section of the amino acid sequence and computationally selecting amino acids to have the lowest protein–DNA interaction energy for the target DNA sequences. Among the designed proteins, one had a gap between the lowest and ...
AbstractZinc finger nucleases are a promising tool to edit DNA in many biological applications, in p...
Cys(2)His(2) zinc finger proteins are one of the most frequently observed DNA-binding motifs in euka...
Recent progress in the design and selection of novel zinc finger proteins with desired DNA binding s...
AbstractWe developed a rational scheme for designing DNA binding proteins. The scheme was applied fo...
AbstractBackground: Zinc-finger proteins of the Cys2His2 type constitute an important family of DNA-...
Thesis (Ph.D.)--Massachusetts Institute of Technology, Dept. of Biology, 2002.Vita.Includes bibliogr...
AbstractEngineered transcription factors and endonucleases based on designed Cys2His2 zinc finger do...
We present a quantitative, theoretical analysis of the recognition mechanisms used by two zinc finge...
This dissertation seeks to improve C2H2 zinc finger protein (ZFP) engineering through computational ...
Zinc fingers of the CYs 2His 2 class comprise one of the largest families of eukaryotic DNA-binding ...
Zinc-finger proteins of the Cys2-His2 type represent a class of malleable DNA-binding proteins that ...
AbstractBackground: Several strategies have been reported for the design and selection of novel DNA-...
We describe methods for generating artificial transcription factors capable of up- or downregulating...
AbstractEngineered transcription factors and endonucleases based on designed Cys2His2 zinc finger do...
Cys2His2 zinc finger proteins are one of the most frequently observed DNA-binding motifs in eukaryot...
AbstractZinc finger nucleases are a promising tool to edit DNA in many biological applications, in p...
Cys(2)His(2) zinc finger proteins are one of the most frequently observed DNA-binding motifs in euka...
Recent progress in the design and selection of novel zinc finger proteins with desired DNA binding s...
AbstractWe developed a rational scheme for designing DNA binding proteins. The scheme was applied fo...
AbstractBackground: Zinc-finger proteins of the Cys2His2 type constitute an important family of DNA-...
Thesis (Ph.D.)--Massachusetts Institute of Technology, Dept. of Biology, 2002.Vita.Includes bibliogr...
AbstractEngineered transcription factors and endonucleases based on designed Cys2His2 zinc finger do...
We present a quantitative, theoretical analysis of the recognition mechanisms used by two zinc finge...
This dissertation seeks to improve C2H2 zinc finger protein (ZFP) engineering through computational ...
Zinc fingers of the CYs 2His 2 class comprise one of the largest families of eukaryotic DNA-binding ...
Zinc-finger proteins of the Cys2-His2 type represent a class of malleable DNA-binding proteins that ...
AbstractBackground: Several strategies have been reported for the design and selection of novel DNA-...
We describe methods for generating artificial transcription factors capable of up- or downregulating...
AbstractEngineered transcription factors and endonucleases based on designed Cys2His2 zinc finger do...
Cys2His2 zinc finger proteins are one of the most frequently observed DNA-binding motifs in eukaryot...
AbstractZinc finger nucleases are a promising tool to edit DNA in many biological applications, in p...
Cys(2)His(2) zinc finger proteins are one of the most frequently observed DNA-binding motifs in euka...
Recent progress in the design and selection of novel zinc finger proteins with desired DNA binding s...