AbstractA panel of 22 naı̈ve peptide libraries was constructed in a polyvalent phage display format and sorted against insulin-like growth factor-1 (IGF-1). The libraries were pooled to achieve a total diversity of 4.4 × 1011. After three rounds of selection, the majority of the phage clones bound specifically to IGF-1, with a disulfide-constrained CX9C scaffold dominating the selection. Four monovalently displayed sub-libraries were designed on the basis of these conserved motifs. Sub-library maturation in a monovalent format yielded an antagonistic peptide that inhibited the interactions between IGF-1 and two cell-surface receptors and those between IGF-1 and two soluble IGF binding proteins with micromolar potency. NMR analysis revealed ...
AbstractBackground: The rapidly expanding list of pharmacologically important targets has highlighte...
Phage display technology presents a rapid means by which proteins and peptides that bind specificall...
Phage display technology utilises peptide and antibody libraries with very high diversities to selec...
AbstractA panel of 22 naı̈ve peptide libraries was constructed in a polyvalent phage display format ...
tions is particularly demanding because their binding surfaces often contain few distinguishing feat...
Molecules with tailored binding specificities are needed for many purposes such as the development o...
Ligands selected from phage-displayed random peptide libraries tend to be directed to biologically r...
BACKGROUND: A rapid phage display method for the elucidation of cognate peptide specific ligand for ...
ABSTRACT: The dramatic improvement in the NMR spectra of insulin-like growth factor I (IGF-I) in the...
The basic idea of displaying peptides on a phage, introduced by George P. Smith in 1985, was greatly...
AbstractPhage display screenings are frequently employed to identify high-affinity peptides or antib...
Background: A rapid phage display method for the elucidation of cognate peptide specific ligand for...
Combinatorial chemistry and biology have become popular methods for the identification of bio-active...
Combinatorial chemistry and biology have become popular methods for the identification of bio-active...
Combinatorial chemistry and biology have become popular methods for the identification of bio-active...
AbstractBackground: The rapidly expanding list of pharmacologically important targets has highlighte...
Phage display technology presents a rapid means by which proteins and peptides that bind specificall...
Phage display technology utilises peptide and antibody libraries with very high diversities to selec...
AbstractA panel of 22 naı̈ve peptide libraries was constructed in a polyvalent phage display format ...
tions is particularly demanding because their binding surfaces often contain few distinguishing feat...
Molecules with tailored binding specificities are needed for many purposes such as the development o...
Ligands selected from phage-displayed random peptide libraries tend to be directed to biologically r...
BACKGROUND: A rapid phage display method for the elucidation of cognate peptide specific ligand for ...
ABSTRACT: The dramatic improvement in the NMR spectra of insulin-like growth factor I (IGF-I) in the...
The basic idea of displaying peptides on a phage, introduced by George P. Smith in 1985, was greatly...
AbstractPhage display screenings are frequently employed to identify high-affinity peptides or antib...
Background: A rapid phage display method for the elucidation of cognate peptide specific ligand for...
Combinatorial chemistry and biology have become popular methods for the identification of bio-active...
Combinatorial chemistry and biology have become popular methods for the identification of bio-active...
Combinatorial chemistry and biology have become popular methods for the identification of bio-active...
AbstractBackground: The rapidly expanding list of pharmacologically important targets has highlighte...
Phage display technology presents a rapid means by which proteins and peptides that bind specificall...
Phage display technology utilises peptide and antibody libraries with very high diversities to selec...