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Search Results to Deborah S Wuttke

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One or more keywords matched the following items that are connected to Wuttke, Deborah

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Academic Article Conserved structure for single-stranded telomeric DNA recognition.
Academic Article Site-directed mutagenesis reveals the thermodynamic requirements for single-stranded DNA recognition by the telomere-binding protein Cdc13.
Academic Article Probing the mechanism of recognition of ssDNA by the Cdc13-DBD.
Academic Article Investigating the role of the Est3 protein in yeast telomere replication.
Academic Article Telomere capping proteins are structurally related to RPA with an additional telomere-specific domain.
Academic Article Homology among telomeric end-protection proteins.
Academic Article Identification of the determinants for the specific recognition of single-strand telomeric DNA by Cdc13.
Academic Article 1H, 13C and 15N resonance assignments of the DNA-binding domain of the essential protein Cdc13 complexed with single-stranded telomeric DNA.
Academic Article Prediction of multiple tandem OB-fold domains in telomere end-binding proteins Pot1 and Cdc13.
Academic Article Inhibition of yeast telomerase action by the telomeric ssDNA-binding protein, Cdc13p.
Academic Article Dissecting protein function: an efficient protocol for identifying separation-of-function mutations that encode structurally stable proteins.
Academic Article Sequence-specific binding to telomeric DNA is not a conserved property of the Cdc13 DNA binding domain.
Concept Saccharomyces cerevisiae Proteins
Concept Saccharomyces cerevisiae
Concept Saccharomyces
Academic Article The tenacious recognition of yeast telomere sequence by Cdc13 is fully exerted by a single OB-fold domain.
Academic Article Structure of Est3 reveals a bimodal surface with differential roles in telomere replication.
Academic Article Single-stranded telomere-binding protein employs a dual rheostat for binding affinity and specificity that drives function.
Academic Article RPA-like single-stranded DNA-binding protein complexes including CST serve as specialized processivity factors for polymerases.

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